US10849847B2 - Compositions and methods for treating rosacea and acne - Google Patents

Compositions and methods for treating rosacea and acne Download PDF

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US10849847B2
US10849847B2 US16/508,611 US201916508611A US10849847B2 US 10849847 B2 US10849847 B2 US 10849847B2 US 201916508611 A US201916508611 A US 201916508611A US 10849847 B2 US10849847 B2 US 10849847B2
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rosacea
minocycline
foam
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Dov Tamarkin
Meir Eini
Yohan HAZOT
Mitchell Shirvan
Tal Hetzroni Kedem
Rita KEYNAN
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Journey Medical Corp
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K9/00Medicinal preparations characterised by special physical form
    • A61K9/0012Galenical forms characterised by the site of application
    • A61K9/0014Skin, i.e. galenical aspects of topical compositions
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K31/00Medicinal preparations containing organic active ingredients
    • A61K31/65Tetracyclines
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • A61K47/08Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing oxygen, e.g. ethers, acetals, ketones, quinones, aldehydes, peroxides
    • A61K47/10Alcohols; Phenols; Salts thereof, e.g. glycerol; Polyethylene glycols [PEG]; Poloxamers; PEG/POE alkyl ethers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • A61K47/08Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing oxygen, e.g. ethers, acetals, ketones, quinones, aldehydes, peroxides
    • A61K47/12Carboxylic acids; Salts or anhydrides thereof
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/06Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
    • A61K47/24Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite containing atoms other than carbon, hydrogen, oxygen, halogen, nitrogen or sulfur, e.g. cyclomethicone or phospholipids
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/44Oils, fats or waxes according to two or more groups of A61K47/02-A61K47/42; Natural or modified natural oils, fats or waxes, e.g. castor oil, polyethoxylated castor oil, montan wax, lignite, shellac, rosin, beeswax or lanolin
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/46Ingredients of undetermined constitution or reaction products thereof, e.g. skin, bone, milk, cotton fibre, eggshell, oxgall or plant extracts
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K9/00Medicinal preparations characterised by special physical form
    • A61K9/10Dispersions; Emulsions
    • A61K9/12Aerosols; Foams
    • A61K9/122Foams; Dry foams
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P17/00Drugs for dermatological disorders
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P7/00Drugs for disorders of the blood or the extracellular fluid

Definitions

  • Rosacea is a chronic acneiform disorder affecting skin and potentially the eye. It is a syndrome of undetermined etiology characterized by both vascular and papulopustular components involving the face and occasionally the neck, scalp, ears and upper trunk. Clinical findings include mid facial erythema, telangiectasis, papules and pustules, and sebaceous gland hypertrophy. Rosacea is characterized by episodic flushing of affected areas, which can be triggered by various factors, such as consumption of alcohol, hot drinks, spicy foods or physical exercise.
  • Facial rosacea is classified/graded in multiple clinical forms: (1) erythematotelangiectatic rosacea which is characterized by (semi-) permanent erythema and/or flushing; (2) papulopustular rosacea, characterized by presence of inflammatory lesions such as papules and pustules; (3) phymatous rosacea characterized by circumscribed permanent swelling/thickening of skin areas, typically the nose; and (4) ocular rosacea characterized by the appearance of redness in eyes and eyelids due to telangiectasias and inflammation, feeling of dryness, irritation, or gritty, foreign body sensations, itching, burning, stinging, and sensitivity to light, eyes being susceptible to infection, or blurry vision.
  • Rosacea occurs most commonly in adult life, between the ages of 30 and 60 years. It is very common in skin types I-II (according Fitzpatrick) and more common in Caucasians, with a prevalence of up to 5% in the U.S. and in Europe. It is estimated that from 10 to 20 million Americans have the condition.
  • Topical treatments for rosacea include metronidazole, azelaic acid and brimonidine tartrate.
  • approved topical therapies rarely show sufficient clinical efficacy or provide only cosmetic relief for several hours.
  • Mainstays of treatment for rosacea are the oral tetracyclines: doxycycline and minocycline.
  • Low-dose systemic doxycycline (Oracea® resp. Oraycea®) is approved for rosacea whereas systemic minocycline is used in many cases for rosacea off-label.
  • Minocycline is generally regarded as having less photosensitivity than doxycycline.
  • the long-term use of systemic antibiotics is limited by potential liver toxicity, phototoxicity, drug-drug interactions and development of antibacterial resistance. Hence, an efficacious topical tetracycline formulation is highly warranted to close this medical gap.
  • Acne is a general term that describes another very common skin disorder, which afflicts many people. The prevalence of adult acne is about 3% in men and between about 11% and 12% in women. Moderate to severe acne is observed in 14% of acne patients. There are various types of acne recognized in the field, including, for example: acne vulgaris and acne conglobata. Acne vulgaris (cystic acne or simply acne) is generally characterized by areas of skin with seborrhea (scaly red skin), comedones (blackheads and whiteheads), papules (pinheads), pustules (pimples), nodules (large papules) and/or possibly scarring.
  • Acne vulgaris may affect the face, the upper part of the chest, and the back. Severe acne vulgaris is inflammatory, but acne vulgaris can also manifest in non-inflammatory forms. Acne conglobata is a severe form of acne, and may involve many inflamed nodules that are connected under the skin to other nodules. Acne conglobata often affects the neck, chest, arms, and buttocks.
  • Mild acne vulgaris is characterized by the presence of few to several papules and pustules, but no nodules.
  • Patients with moderate acne typically have several to many papules and pustules, along with a few to several nodules.
  • severe acne vulgaris patients typically have numerous or extensive papules and pustules, as well as many nodules.
  • Acne may also be classified by the type of lesion: comedonal, papulopustular, and nodulocystic. Pustules and cysts are considered inflammatory acne.
  • Topical retinoids are comedolytic and anti-inflammatory. Antibiotics such as tetracycline antibiotics are generally only available orally or by injection. Topical antibiotics are mainly used for their role against P. acnes . Benzoyl peroxide products are also effective against P. acnes . Unfortunately, these medications can lack satisfactory safety and efficacy profiles.
  • topical anti-acne treatments and formulations there are provided herein new and better topical anti-acne treatments and formulations.
  • Diagnosis of acne vulgaris may begin with a visual inspection to determine the presence and amount of comedones, papules, pustules, nodules, and other inflammatory lesions.
  • a diagnosis of acne vulgaris may also be confirmed via clinical laboratory tests, for example, measurement of testosterone levels and performing skin lesion cultures.
  • Systemic antibiotics are generally indicated for moderate or severe acne.
  • the most commonly used systemic antibiotics are tetracycline and their derivatives (e.g., minocycline). These agents have anti-inflammatory properties and they are effective against P. acnes .
  • the more lipophilic antibiotics, such as minocycline and doxycycline, are generally more effective than tetracycline. Greater efficacy may also be due to less P. acnes resistance to minocycline.
  • Oral tetracycline antibiotics are generally not recommended in the treatment of minor mild acne, primarily because they cause hyper-pigmentation, erythema and dryness.
  • Oral tetracycline therapy may induce hyperpigmentation in many organs, including nails, bone, skin, eyes, thyroid, visceral tissue, oral cavity (teeth, mucosa, alveolar bone), sclerae and heart valves.
  • Skin and oral pigmentation have been reported to occur independently of time or amount of drug administration, whereas other tissue pigmentation has been reported to occur upon prolonged administration. Skin pigmentation includes diffuse pigmentation as well as over sites of scars or injury.
  • Oral tetracyclines should not be used for pregnant women or nursing mothers due to teratogenic effects. Accordingly, there exists a need for topical formulations with tetracyclines which can avoid the side effects observed with oral applications.
  • SOLODYN® a commercially available product
  • SOLODYN® is indicated to treat only inflammatory lesions of non-nodular moderate to severe acne vulgaris in patients 12 years of age or older.
  • Adverse side effects from the use of SOLODYN® include, inter alia, diarrhea, dizziness, lightheadedness, and nausea, in addition to allergic reactions, bloody stool, blurred vision, rectal or genital irritation, and red, swollen, blistered, or peeling skin. Because of these side effects, the Food and Drug Administration added oral minocycline to its Adverse Event Reporting System (AERS), a list of medications under investigation by the FDA for potential safety issues.
  • AERS Adverse Event Reporting System
  • compositions and methods to address those needs.
  • a method for treating rosacea or acne in a subject in need thereof comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein said tetracycline antibiotic is present in said gel or foam composition in an amount effective to treat rosacea or acne in a subject.
  • the gel or foam composition provided herein further comprises at least one hydrophobic solvent, at least one viscosity-modifying agent, or a combination thereof.
  • the composition comprises silicon dioxide (SiO 2 ).
  • the tetracycline antibiotic is minocycline hydrochloride or doxycycline hyclate, or a combination thereof.
  • a method of manufacturing a gel or foam composition having a tetracycline antibiotic comprising: providing a composition having one or more hydrophobic solvents; heating said composition; adding fatty alcohols, fatty acids, and waxes; cooling said composition; adding SiO 2 ; and adding tetracycline antibiotic.
  • a method for treating rosacea or acne in a subject in need thereof comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic, wherein said tetracycline antibiotic is minocycline.
  • a hydrophobic foam or gel composition comprising: about 50% by weight of soybean oil; about 23.6% by weight of coconut oil; about 5% by weight of cyclomethicone; about 2.8 to 4.3% by weight of light mineral oil; about 3.5% by weight of cetostearyl alcohol; about 3% by weight of stearic acid; about 2.5% by weight of myristyl alcohol; about 2% by weight of hydrogenated castor oil; about 2% by weight of beeswax; about 1.5% by weight of stearyl alcohol; about 1.1% by weight of behenyl alcohol; and about 1.5 to 3% by weight of minocycline.
  • a method for treating a rosacea in a subject in need thereof comprising: administering to said subject a hydrophobic foam or gel composition comprising about 50% by weight of soybean oil; about 23.6% by weight of coconut oil; about 5% by weight of cyclomethicone; about 2.8 to 4.3% by weight of light mineral oil; about 3.5% by weight of cetostearyl alcohol; about 3% by weight of stearic acid; about 2.5% by weight of myristyl alcohol; about 2% by weight of hydrogenated castor oil; about 2% by weight of beeswax; about 1.5% by weight of stearyl alcohol; about 1.1% by weight of behenyl alcohol; and about 1.5 to 3% by weight of minocycline.
  • a hydrophobic foam or gel composition comprising about 50% by weight of soybean oil; about 23.6% by weight of coconut oil; about 5% by weight of cyclomethicone; about 2.8 to 4.3% by weight of light mineral oil; about 3.5% by weight of cetostearyl alcohol; about
  • a method for reducing papules and pustules in a subject in need thereof comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic to treat, ameliorate, reduce, or cure acne or rosacea.
  • a method for reducing skin lesion in a subject in need thereof comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
  • a method for reducing skin redness in a subject in need thereof comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
  • a method for treating erythema in a subject in need thereof comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
  • a method for treating a rosacea in a subject in need thereof comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
  • a method for reducing papules and pustules in a subject in need thereof comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
  • a method for reducing skin lesions in a subject in need thereof comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
  • a method for reducing skin redness in a subject in need thereof comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
  • a method for treating erythema in a subject in need thereof comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
  • FIG. 1A - FIG. 1B show significant decrease in the number of papules and pustules after treatment with a 1.5% and 3% minocycline foam. Specifically, FIG. 1A shows absolute change in papules and pustules, while FIG. 1B shows percent reduction in papules and pustules.
  • FIG. 2A - FIG. 2B show investigator's global assessment (IGA) results.
  • FIG. 2A shows subjects with IGA improvement ⁇ 2 grades and
  • FIG. 2B shows subjects with IGA improvement of at least two grades which resulted in clear (0) to almost clear (1) score.
  • FIG. 3 shows clinical erythema assessment change from the baseline after 12 weeks of treatment.
  • FIG. 4A - FIG. 4B show mean plasma minocycline concentration vs time profiles following a single oral dose of minocycline during Period 1 ( FIG. 4A ) and topical application of minocycline foam 4% daily for 21 days during Period 2 ( FIG. 4B ).
  • FIG. 4 C shows comparison of mean plasma minocycline concentration over the first 24 hours after oral minocycline dose or topical minocycline foam 4% administration over the 24 hours at day 1, day 12 and day 21. Graphs are shown with semi-log scale.
  • FIG. 5 shows mean plasma minocycline pre-dose concentration-vs-time profile for topical minocycline foam 4% from day 1 through day 21 (linear scale).
  • FIG. 6 shows changes in RosaQoL (Rosacea Quality of Life) index score at Week 12 of treatment with two doses of FMX103 (1.5% and 3%) and vehicle foam as compared to baseline (prior to treatment).
  • compositions and methods for treating rosacea are provided herein. Specifically, provided herein are gel and foam compositions having a tetracycline antibiotic and uses thereof for treating rosacea and/or acne.
  • the method provided herein includes administering topically to a surface having the disorder a therapeutic hydrophobic composition comprising a tetracycline antibiotic.
  • the hydrophobic composition comprises a carrier comprising about 60% to about 99% by weight of at least one hydrophobic solvent; at least one viscosity-modifying agent selected from the group consisting of a fatty alcohol, a fatty acid and a wax; and a tetracycline antibiotic.
  • the composition comprises silicon dioxide (SiO 2 ).
  • a method of treating human skin disorders such as rosacea or rosacea related diseases or disorders by topical application of a foam or gel or liquid gel as described herein to a patient in need thereof.
  • the tetracycline is a minocycline or doxycycline, which are semi-synthetic tetracycline antibiotic.
  • the tetracycline is minocycline.
  • the tetracycline drug is usually bacteriostatic in action. It can, among other options, exert its antimicrobial activity by inhibiting protein synthesis. It can also have an antiviral effect.
  • the minocycline is minocycline hydrochloride (minocycline HCl; hereinafter “MCH”).
  • MCH is a yellow crystalline powder that is sparingly soluble in water, slightly soluble in alcohol and practically insoluble in chloroform and in ether.
  • Minocycline is known to be highly sensitive to air and light and undergoes rapid degradation. Therefore, storage of foamable formulations in airtight sealed containers under pressure with propellant can contribute to preserving stability subject to selection of compatible canisters and accessories. Likewise, production and/or filling under vacuum in an oxygen free environment can help.
  • the ingredients of the carrier are selected for their compatibility with tetracycline antibiotics as described. Since it is not sufficient to identify single ingredients that are compatible with tetracycline antibiotics, formulations had to be found in which the ingredients in combination were also compatible with tetracycline antibiotics.
  • the hydrophobic foamable composition (e.g., foam or gel) provided herein comprises: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) about 1% to about 22% by weight of at least one viscosity modifying agent; and c) about 0.1% to about 18% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline
  • the hydrophobic foamable composition or gel provided herein comprises: a) about 70% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 0.5% to about 8% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 75% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 1% to about 4% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline
  • the hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 88% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 2% to about 6% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline
  • substantially surfactant-free oleaginous formulations comprising a tetracycline, such as a minocycline, for use in treatment of a rosacea disease, and/or acne related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and other superficial infections, including skin infections.
  • the tetracycline acts to reduce oxidative stress and/or inflammation in skin pathologies.
  • the tetracycline is effective where the condition is accompanied by apoptotic cell death.
  • the tetracycline is minocycline HCl at a concentration of about 1.5% or about 3%, or any concentration in between.
  • Various carriers and compositions or formulations are described herein. They are often described for use in a method. A reference to or example of a carrier, composition or formulation for use in one method does not in any way limit the carrier, composition or formulation for use just in that method, but it can be for use in any other method or embodiment described herein.
  • the carriers, compositions or formulations described herein are in one or more embodiments provided as carriers, compositions or formulations and are in one or more embodiments provided as a product even where they are described only in relation to their use in a method.
  • the term “about” has its usual meaning in the context of pharmaceutical and cosmetic formulations to allow for reasonable variations in amounts that can achieve the same effect.
  • the term “about” herein it is meant as indicated above and also that a figure or range of figures can vary in an embodiment plus or minus up to 30%.
  • the amount can be up to 1.3 or from 0.70.
  • it can reflect a variation of plus or minus 20%, in which case “about 2” can reflect a variation of 1.6 to 2.4.
  • it can describe a variation of plus or minus 10%, in which case “about 1” can reflect a variation of 0.9 to 1.1.
  • composition(s) and “formulation(s)” can be used interchangeably depending on the context in which they are used as would be appreciated by a person skilled in the art.
  • room temperature means 20° C. to 25° C. In an embodiment it is 20° C. In an embodiment it is 21° C. In an embodiment it is 22° C. In an embodiment it is 23° C. In an embodiment it is 24° C. In an embodiment it is 25° C.
  • thixotropic means that the formulation shows a decrease in viscosity upon application of shear force. The structure of the formulation breaks down, leading to a reduction in viscosity. When the formulation is standing without shear force, this decrease in viscosity is recovered over time.
  • gel means a jelly-like material that can have properties ranging from soft and fluid to hard and tough. Gels can be in a liquid, a semi-liquid, a semi-solid or a solid state. Solid gels are defined as a substantially diluted cross-linked system, which exhibits no flow when in the steady-state. By weight, gels are mostly liquid, yet they behave like semi-solids due to a three-dimensional cross-linked network of a solidifying, gelling or thickening agent within the liquid. It is the crosslinks within the fluid that give a gel its structure (hardness) and contribute to stickiness (tack).
  • the gel can be semi-solid with some limited flowability, such that when the semi-solid gel is placed in a tube and is inclined horizontally from a vertical position it will slowly flow from the vertical towards the horizontal or it can be a liquid gel where the amount of gelling agent or gelling effect is lower, such that the gel structure or connections are weaker or loose so that when placed in a tube and tilted from a vertical position to a horizontal position, the gel readily flows and adapts to the horizontal position.
  • the rheological properties of gels at different surface temperatures can influence the release and bioabsorption of drugs therefrom.
  • liquid gel refers, inter alia, to a formulation after propellant is added (whereas, prior to adding the propellant, the formulation is a gel), or where the gel is loose or fluid or such that when subjected to gravity, it will pour or become liquid.
  • single phase it is meant that after addition of propellant to the composition or carrier, the liquid components of the foamable composition or carrier are fully miscible, and the solid components, if any, are either dissolved or homogeneously suspended in the composition so that only one phase is visible.
  • substantially a single phase it is meant that the composition or carrier, after addition of propellant, is primarily or essentially a single phase as explained above, but can also have present a small amount of material which is capable of forming a separate phase amounting to less than about 5% by weight of the composition or carrier after the addition of propellant, or less than about 3% by weight, and/or less than about 1% by weight of the composition.
  • stable active agent means an active agent which is oxidized and/or degraded within less than a day, and in some cases, in less than an hour upon exposure to air, light, skin, water, or a pharmaceutical excipient under ambient conditions.
  • surfactant refers to stand alone compounds used to reduce surface tension between two substances or phases, and which are also capable of stabilizing an emulsion of water and oil. Reduction of surface tension can be significant in foam technology in relation to the ability to create small stable bubbles. “Surfactant” and “emulsifier,” as used herein, do not include compounds which do not function effectively as standalone compounds for reducing surface tension between two substances or phases and which are not capable of stabilizing an emulsion of water and oil.
  • a surfactant or emulsifier as provided herein does not include fatty acids, does not include fatty alcohols, and does not include propoxylated lanolin oil derivatives.
  • fatty acids and fatty alcohols are defined as foam adjuvants.
  • propoxylated lanolin oil derivatives in the context herein are defined as emollients.
  • Standard surfactant “Customary surfactant” or “stand alone surfactant” refer to customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and amphiphilic surfactants.
  • Many standard surfactants are derivatives of fatty alcohols or fatty acids, such as ethers or esters formed from such fatty alcohols or fatty acids with hydrophilic moieties, such as polyethylene glycol (PEG).
  • PEG polyethylene glycol
  • a native (non-derivatized) fatty alcohol or fatty acid, as well as waxes are not regarded as a standard surfactant.
  • co-surfactant means a molecule which on its own is not able to form and stabilize satisfactorily an oil-in-water emulsion, but when used in combination with a surfactant as defined herein, the co-surfactant has properties which can allow it to help a surfactant create an emulsion and can boost the stabilizing power or effect of the surfactant.
  • co-surfactants include fatty alcohols, such as cetyl alcohol, or fatty acids, such as stearic acid. Cetyl alcohol is a waxy hydrophobic substance that can be emulsified with water using a surfactant.
  • viscosity-modifying agent in the context of the present disclosure is an agent which, when added to a hydrophobic oil, facilitates the creation of a hydrophobic breakable vehicle in the form of a breakable gel or breakable foam.
  • the viscosity-modifying agent is a “foamer complex,” which is also referred as a “foam stabilizer” in this application, comprising a fatty alcohol, a fatty acid and/or a wax.
  • the foamer complex is a fatty alcohol and a wax or a fatty acid and a wax. In some embodiments it is a wax.
  • the foamer complex or viscosity modifying agent comprises at least one of a fatty alcohol, a wax or a fatty acid.
  • the foamer complex or viscosity modifying agent is selected from a group consisting of a fatty alcohol, a wax and a fatty acid. In some embodiments, it is a fatty alcohol. In some embodiments, it is a fatty acid. In some embodiments a fatty alcohol, and/or a fatty acid and/or a wax is an adjuvant.
  • fatty alcohols fatty acids and waxes that are compatible with tetracycline antibiotics, and in particular with a minocycline or a doxycycline, are compatible adjuvants.
  • water activity represents the hygroscopic nature of a substance, or the tendency of a substance to absorb water from its surroundings. Microorganisms require water to grow and reproduce, and such water requirements are best defined in terms of water activity of the substrate.
  • Staphylococcus aureus is most resistant and can proliferate with an Aw as low as 0.86, and fungi can survive at an Aw of at least 0.7.
  • the identification of a “solvent,” as used herein, is not intended to characterize the solubilization capabilities of the solvent for any specific active agent or any other component of the foamable composition. Rather, such information is provided to aid in the identification of materials suitable for use as a component of the foamable composition described herein.
  • the term “preventing” refers to avoiding the onset of a disorder or condition from occurring in a subject that has not yet been diagnosed as having the disorder or condition, but who may be susceptible to it.
  • treatment refers to inhibiting the disorder or condition, i.e., arresting its development; relieving the disorder or condition, i.e., causing regression of the disorder or condition or reversing the progression of the disorder or condition; or relieving or reducing one or more symptoms of the disorder or condition.
  • a method of preventing, treating a disease or a disorder as provided throughout the specification is interchangeable with the term “use of the composition as a medicament for preventing or treating a disease.”
  • disease is used interchangeably with the term “disorder.”
  • composition comprises less than about 0.5% by weight, e.g., less than about 0.4% by weight, less than about 0.3% by weight, less than about 0.2% by weight, or less than about 0.1% by weight, of an ingredient unless specifically indicated otherwise.
  • the term “essentially free of” an ingredient as provided throughout the specification is intended to mean that the composition comprises less than about 0.05% by weight, less than about 0.01% by weight, less than about 0.001% by weight, or 0% by weight, or insignificant or negligible amounts of the ingredient, unless specifically indicated otherwise.
  • the term “free of” an ingredient as provided throughout the specification is intended to mean that the composition does not comprise any amount of the ingredient, unless specifically indicated otherwise.
  • surfactant-free or “emulsifier-free” or “non-surfactant” refer to compositions which comprise no or negligible levels of surfactants, emulsifiers, or surface active agents. Where a formulation includes insignificant or de minimis amounts of surfactants, emulsifiers, or surface active agents it is considered to be essentially surfactant-free. As used herein, “essentially free” indicates less than about 0.05% by weight, less than about 0.01% by weight, less than about 0.001% by weight, or 0% by weight of a surfactant selected from the group consisting of customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and ampholytic surfactants.
  • substantially surfactant-free relates to a composition wherein the ratio between the viscosity-modifying agent and the surfactant is between 10:1 or 5:1; or between 20:1 and 10:1 or between 100:1 and 20:1.
  • the term relates to a composition that contains a total of about or less than 0.5% by weight; about or less than 0.4% by weight; or about or less than 0.3% by weight of a surfactant selected from the group consisting of customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and ampholytic surfactants.
  • the composition comprises about or less than 0.2% by weight of a standard or customary surfactant; about or less than 0.15% by weight; about or less than 0.1% by weight; about or less than 0.05% by weight; or about or less than 0.01% by weight.
  • hydrophobic gel composition or “hydrophobic foam composition” or “hydrophobic composition” are intended to mean that the composition has a low solubility in water. In one embodiment, 100 to 1000 parts of water are needed to dissolve or render miscible 1 part of the composition. In another embodiment, 1000 to 10,000 parts of water are needed to dissolve or render miscible 1 part of the composition. In yet another embodiment, more than 10,000 parts of water are needed to dissolve or render miscible 1 part of the composition.
  • the term “clinical response to treatment”, (“clinical success” or “clinical failure”) in the context of rosacea treatment is derived from efficacy evaluation endpoints.
  • the term “lesion count” relates to the number of inflammatory lesions (e.g., papules and pustules) present in a designated area of the body (e.g., in case of face, on the forehead, left and right cheeks, nose and chin).
  • high rates of clinical response or “high efficacy” or “substantial decrease” in the context herein can relate to an absolute change in inflammatory lesion count of at least 19 compared to baseline, a reduction of about 45% or more in inflammatory lesions count or to where subjects met a success criterion of “clear” or “almost clear” or to an “improvement of 2 grades from the baseline”; or to where subjects receive an excellent score according to Investigator's Global Improvement Assessment; or to where patients receive a two step drop in Patient's Global Improvement Assessment (IGA) score; or wherein according to any of the aforementioned endpoints a statistically significant reduction or improvement is demonstrated as compared to placebo.
  • IGA Patient's Global Improvement Assessment
  • regular basis it is meant a repeated or repeatable interval of time which can be by way of illustration, a part of a day, daily, once daily, twice daily, alternative daily, alternate daily, twice weekly, trice weekly, weekly, fortnightly, monthly or some other repeated or repeatable interval for an appropriate period of time wherein a dose is to be applied.
  • the repeated applications can be determined according to the needs of the subject and the disease or disorder. In some circumstances as little as three repeat doses can be required.
  • AE adverse event
  • safety in the context herein means having no or essentially no adverse events (e.g., any unfavorable or unintended sign, symptom, or disease that appears or worsens on the course of treatment).
  • polyol as used herein is an organic substance that contains at least two hydroxyl groups in its molecular structure.
  • local safety or “tolerable” or “enhanced tolerability” in the context herein means having no or essentially no skin irritation symptoms such as telangiectasis, burning or stinging, flushing or blushing, or alternatively, when such symptoms arise they are mild and disappear without interrupting treatment.
  • the score for such symptoms is measured by the investigator at baseline, 2, 4, 8, and 12 weeks and is according to a scale of none, mild, moderate and severe. The score represents the subject's condition at the time of evaluation.
  • the score for burning or stinging and flushing or blushing is based on the subject's symptoms reported for the previous three days. These symptoms should not be included as adverse events, unless a symptom is believed to have been related to the study medication or is the reason for discontinuation from the study.
  • telangiectasis By “essentially no” in the context of tolerability includes insignificant or de minimis occurrences of skin irritation events manifested in symptoms such as telangiectasis, burning or stinging, flushing or blushing, or mild transient events connected with the application of topical tetracyclines or vehicle.
  • the clinical response was determined at each study visit inter alia by an absolute inflammatory lesion count, by % change in inflammatory lesion count, by Investigator global assessment, by improvement assessment (by the Investigator) and improvement assessment (by the patient). Photographs were also used to assess the clinical improvement.
  • the improvement assessment by the investigator includes scoring rosacea severity based on the number of inflammatory lesions and level of erythema.
  • the improvement assessment by the patient involves measuring the health-related quality of life of patients through Rosacea Quality of Life (RosaQoL), a self-administered questionnaire.
  • clinical failure is defined as insufficient improvement or deterioration (i.e., an increase or no change in the number of lesions).
  • Gel or foam compositions having tetracycline antibiotic are well-known in the art and fully described in U.S. Patent Application Publication Nos. 2014/0121188 and 2013/0225536, which are herein incorporated by reference in their entirety.
  • a hydrophobic gel or foam composition comprising a tetracycline antibiotic for use in treating a rosacea in a human subject suffering therefrom comprising topically administering the composition to the human subject in a sufficient amount and for a sufficient time to decrease the number of rosacea lesions.
  • tetracycline antibiotic Any tetracycline antibiotic known to one of skilled in the art can be used.
  • examples of a tetracycline antibiotic include, for example, but not limited to tetracycline, oxytetracycline, demeclocycline, doxycycline, lymecycline, meclocycline, methacycline, minocycline, rolitetracycline, chlorotetracycline, and tigecycline.
  • the tetracycline is a minocycline or doxycycline, which are semi-synthetic tetracycline antibiotic.
  • the tetracycline is minocycline.
  • the tetracycline drug is usually bacteriostatic in action. It can, amongst other options, exert its antimicrobial activity by inhibiting protein synthesis. It can also have an antiviral effect.
  • the minocycline is minocycline hydrochloride (minocycline HCl; (hereinafter “MCH”)).
  • MCH is a yellow crystalline powder that is sparingly soluble in water, slightly soluble in alcohol and practically insoluble in chloroform and in ether.
  • Minocycline and MCH is known to be highly sensitive to air and light and undergoes rapid degradation. Therefore, storage of foamable formulations in airtight sealed containers under pressure with propellant can contribute to preserving stability, subject to selection of compatible canisters and accessories. Likewise, production and/or filing under vacuum in an oxygen free environment can help.
  • topical minocycline foam offered a safe and effective alternative to topical compositions containing for example, ivermectin, metronidazole, azelaic acid and brimonidine tartrate for the topical treatment of rosacea.
  • topical compositions containing for example, ivermectin, metronidazole, azelaic acid and brimonidine tartrate for the topical treatment of rosacea.
  • bacterial infections that can be effectively treated by topical tetracycline antibiotics include, but not limited to, cellulitis, acute lymphangitis, lymphadenitis, erysipelas, cutaneous abscesses, necrotizing subcutaneous infections, staphylococcal scalded skin syndrome, folliculitis, furuncles, hidradenitis suppurativa, carbuncles, paronychial infections, erythrasma, disorders of hair follicles and sebaceous glands, acne, impetigo, rosacea, perioral dermatitis, hypertrichosis (hirsutism), alopecia, including male pattern baldness, alopecia greata, alopecia universalis and alopecia totalis, pseudofolliculitis barbae, and keratinous cyst.
  • rosacea involves papules and pustules, which can be treated with an antibiotic agent, as well as erythem
  • the active agent can be a placebo or a cosmetic agent.
  • the foamable composition is suitable for use in the manufacture of a medicament including a placebo or active agent.
  • the tetracycline antibiotic is hydrophobic.
  • the Log of the distribution constant of the tetracycline antibiotic at pH 7.0 is equal to or less than about 0.2.
  • tetracycline antibiotic forms suitable for use according to the methods and compositions of the present disclosure include, but are not limited to, a free base form, a hydrate form, a salt form, a chelate complex form or a coordination complex form.
  • the tetracycline antibiotic does not comprise a hydroxyl group at carbons 5, 6, and 7.
  • the tetracycline antibiotic comprises or is selected from the group consisting of minocycline and doxycycline.
  • the tetracycline antibiotic is minocycline.
  • the concentration of minocycline is in a range between about 0.1% to about 10% by weight (e.g., about 0.1% to about 8% by weight, about 0.1% to about 5% by weight, about 0.1% to about 3% by weight, about 0.1% to about 2% by weight, about 0.1% to about 1% by weight, about 0.1% to about 0.75% by weight, about 0.1% to about 0.5% by weight, about 0.1% to about 0.25% by weight, about 0.25% to about 10% by weight, about 0.5% to about 10% by weight, about 0.5% to about 5% by weight, about 0.5% to about 4% by weight, about 0.5% to about 3% by weight, about 1% to about 10% by weight, about 2% to about 10% by weight, about 4% to about 10% by weight, about 4% to about 10% by weight, about 4% to about 10% by weight, about 4% to
  • the concentration of minocycline is at least about 0.05% by weight, is at least about 0.1% by weight, at least about 0.5% by weight, at least about 1% by weight, at least about 2% by weight, at least about 4% by weight, at least about 6% by weight, at least about 8% by weight or at least about 10% by weight.
  • the minocycline is micronized.
  • the initial dose of tetracycline is about 18%, or about 17.5%, or about 16.5%, or about 15.5%, or about 14.5%, or about 13.5% or about 12.5%, or about 11.5%, or about 10.5% or about 9.5% or about 8.5% or about 7.5% or about 6.5% or about 5.5% or about 4.5% or about 3.5% or about 2.5% or about 1.5%, or about 17%, or about 16%, or about 15%, or about 14%, or about 13% or about 12%, or about 11%, or about 10% or about 9% or about 8% or about 7% or about 6% or about 5% or about 4% or about 3% or about 2% or about 1% or about 0.75% or about 0.5% or about 0.25% or about 0.2% by weight of the composition.
  • the maintenance dose of tetracycline is about 7.5% or about 6.5% or about 5.5% or about 4.5% or about 3.5% or about 2.5% or about 1.5%, 7% or about 6% or about 5% or about 4% or about 3% or about 2% or about 1% or about 0.5%, or about 1.9%, or about 1.8%, or about 1.7%, or about 1.6%, or about 1.55 or about 1.4% or about 1.3% or about 1.2% or about 1.1%, or about 0.9% or about 0.8%, or about 0.7%, or about 0.6% or about 0.4% or about 0.35 or about 0.25% or about 0.2% or about 0.15% or about 0.1% by weight of the composition.
  • substantially surfactant-free oleaginous formulations comprising a tetracycline, such as a minocycline, for use in treatment of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder.
  • the tetracycline is used for the treatment of rosacea.
  • the tetracycline is used for the treatment of impetigo.
  • the tetracycline is used for the treatment of acne. In one or more embodiments the tetracycline acts to reduce oxidative stress and/or inflammation in skin pathologies. In one or more embodiments the tetracycline is effective where the condition is accompanied by apoptotic cell death.
  • a hydrophobic gel or foam composition comprising a minocycline antibiotic for use in treating a disorder selected from the group consisting of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for at least two weeks to the skin, wherein the hydrophobic gel or foam composition is waterless and does not comprise a silicone other than cyclomethicone.
  • a hydrophobic gel or foam composition comprising a minocycline antibiotic for use in treating a disorder selected from the group consisting of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for at least two weeks to the skin, mucosa, or eye, wherein the hydrophobic gel or foam composition is waterless and does not comprise a polyethylene gelling agent or polyethylene homopolymer or polyethylene copolymer or a customary surfactant.
  • hydrophobic oil based foam vehicle contributes to cutaneous bioavailability, including the achievement of therapeutic levels of minocycline in the pilosebaceous unit.
  • Specific targeting of hydrophobic oil based foam vehicle to the pilosebaceous unit is enabled due the hydrophobic nature of the pilosebaceous gland.
  • a vehicle for delivering a therapeutically effective amount of active agent to the sebaceous gland or the sebaceous gland area or the pilosebaceous unit comprising: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) at least one viscosity-modifying agent, wherein said agent is a wax, a fatty alcohol, a fatty acid, or mixtures of any two or more thereof.
  • a vehicle for delivering a therapeutically effective amount of active agent to the sebaceous gland or the sebaceous gland area or the pilosebaceous unit comprising: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) at least one viscosity-modifying agent comprising a wax and a fatty alcohol or a fatty acid, or both; wherein the active agent is a tetracycline antibiotic.
  • a vehicle for delivering a therapeutically effective amount of active agent to the sebaceous gland or the sebaceous gland area or the pilosebaceous unit comprising: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) at least one viscosity-modifying agent, wherein said agent is a wax, a fatty alcohol, a fatty acid, or mixtures of any two or more thereof; wherein the active agent is a minocycline.
  • a hydrophobic solvent can be useful.
  • some essential oils can kill microorganisms or can prevent of conditions that involve microbial infection.
  • hydrophobic solvents can useful for the treatment of conditions which involve damaged skin, such as psoriasis or atopic dermatitis.
  • the combination of a hydrophobic solvent and a fatty alcohol or fatty acid can be of possible help in conditions characterized, for example, by infection and/or inflammation.
  • the at least one hydrophobic solvent comprises or is selected from the group consisting of a mineral oil, a hydrocarbon oil, an ester oil, an ester of a dicarboxylic acid, a triglyceride oil, an oil of plant origin, an oil from animal origin, an unsaturated or polyunsaturated oil, a diglyceride, a PPG alkyl ether, an essential oil, a silicone oil, liquid paraffin, an isoparaffin, a polyalphaolefin, a polyolefin, polyisobutylene, a synthetic isoalkane, isohexadecane, isododecane, alkyl benzoate, alkyl octanoate, C12-C15 alkyl benzoate, C12-C15 alkyl octanoate, arachidyl behenate, arachidyl propionate, benzyl laurate, benzyl myristate
  • the hydrophobic solvent comprises or is selected from the group consisting of soybean oil, a coconut oil, a cyclomethicone, a light mineral oil, and mixtures of any two or more thereof.
  • the solvent is tested individually for compatibility with a tetracycline antibiotic and is only used if it passes a compatibility test as described below in the Methods.
  • the concentration of the hydrophobic solvent and/or viscosity modifying agent in the composition is selected to provide an Aw value selected from the ranges between or of (1) about 0.8 and about 0.9; (2) about 0.7 and about 0.8; and (3) less than about 0.7.
  • Delivering the formulation in a pressurized package does not allow for humidity to be absorbed by the preparation, and therefore, the water free character of the composition is not altered or compromised.
  • no preservative is needed in the formulations provided herein because the formulation is a waterless hydrophobic solvent or oil-based formulation having an Aw (water activity) value of less than 0.9, or less than about 0.8, or less than about 0.7, or less than about 0.6, and/or less than about 0.5, which is below the level of microbial proliferation.
  • Aw water activity
  • the hydrophobic solvent is at a concentration of about 75% to about 90% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of at least about 40% by weight, at least about 50% by weight, at least about 60% by weight, at least about 70% by weight, at least about 90% by weight. In some embodiments, the hydrophobic solvent is at a concentration of less than about 90% by weight, less than about 80% by weight, less than about 70% by weight, less than about 60% by weight, less than about 50% by weight.
  • the formulation can include a fatty alcohol.
  • a fatty alcohol Long chain saturated and mono unsaturated fatty alcohols, e.g., stearyl alcohol, erucyl alcohol, arachidyl alcohol and behenyl alcohol (docosanol) have been reported to possess antiviral, anti-infective, ant proliferative and anti-inflammatory properties (see, U.S. Pat. No. 4,874,794).
  • Longer chain fatty alcohols e.g., tetracosanol, hexacosanol, heptacosanol, octacosanol, triacontanol, etc., are also known for their metabolism modifying properties, and tissue energizing properties.
  • the fatty alcohol and/or fatty acid have a melting point of at least about 40° C.
  • the fatty alcohol comprises or is selected from the group consisting of lauryl alcohol, myristyl alcohol, cetyl alcohol, stearyl alcohol, cetostearyl, arachidyl alcohol, behenyl alcohol, tetracosanol, hexacosanol, octacosanol, triacontanol, and tetratriacontanol or mixtures of any two or more thereof.
  • the fatty acid comprises or is selected from the group consisting of dodecanoic acid, tetradecanoic acid, hexadecanoic acid, heptadecanoic acid, octadecanoic acid, eicosanoic acid, docosanoic acid, tetracosanoic acid, hexacosanoic acid, heptacosanoic acid, octacosanoic acid, triacontanoic acid, dotriacontanoic acid, tritriacontanoic acid, tetratriacontanoic acid, and pentatriacontanoic acid or mixtures of any two or more thereof.
  • the carbon chain of the fatty alcohol or the fatty acid is substituted with a hydroxyl group.
  • the fatty acid is 12-hydroxy stearic acid.
  • the gel is stable and it retains its viscosity upon dispensing from a container, such as a tube, yet, it liquefies and spreads easily upon application of shear force, which can be mild, such as a simple rub. Further, while the gel is oily, it absorbs into the site of application, such as the skin or mucosa membrane, and after minutes the surface does not appear and/or feel significantly oily or greasy.
  • formulations comprising a hydrophobic oil and viscosity-modifying agents demonstrated increased viscosity of such oil, and to which when even small amounts of a suspended tetracycline antibiotic were added, a substantial or synergistic increase in the viscosity of the composition was observed.
  • the viscosity-modifying agent is a wax comprising or selected from the group consisting of a plant wax, carnauba wax, candelilla wax, ouricury wax, sugarcane wax, retamo wax, jojoba oil, an animal waxes, beeswax, a hydrogenated castor oil, a petroleum derived wax, a paraffin wax, polyethylene, and derivatives thereof.
  • the viscosity-modifying agent is a combination comprising (i) at least one fatty alcohol and at least one fatty acid; or (ii) at least one fatty alcohol and at least one wax; or (iii) at least one fatty acid and at least one wax; or (iv) at least one fatty alcohol, at least one fatty acid, and at least one wax.
  • the at least one viscosity-modifying agent comprises or is selected from the group consisting of a fatty alcohol, a fatty acid and a wax, wherein the fatty alcohols and/or fatty acids have at least 12 carbon atoms in their carbon backbone.
  • the viscosity modifying agent is a combination of a fatty alcohol and a fatty acid and/or a wax.
  • the viscosity-modifying agent is at a concentration of about 0.1% to about 22%, about 0.4 to about 18%, about 0.5% to 16%, about 0.6% to 14%, about 0.7% to 13%, about 0.8 to about 12%, about 0.9% to about 11%, about 1% to about 10%, about 10% to about 22% by weight.
  • the viscosity-modifying agent is a fatty alcohol having at least 12 carbon atoms in its carbon backbone.
  • the viscosity-modifying agent is a fatty acid having at least 12 carbon atoms in its carbon backbone.
  • the viscosity-modifying agent is at a concentration of about 9.5% or about 8.5% or about 7.5% or about 6.5% or about 5.5% or about 4.5% or about 3.5% or about 2.5% or about 1.5%, about 7% or about 6% or about 5% or about 4% or about 3% or about 2% or about 1% or about 0.5%, or about 1.9%, or about 1.8%, or about 1.7%, or about 1.6%, or about 1.55 or about 1.4% or about 1.3% or about 1.2% or about 1.1%, or about 0.9% or about 0.8%, or about 0.7%, or about 0.6% or about 0.5% by weight of the composition or less than any of the aforesaid amounts.
  • the fatty alcohol and/or fatty acid and/or wax are solid at ambient temperature.
  • the fatty alcohol and/or the fatty acid and/or the wax or the mixture of them have a melting point of more than about 40° C.
  • the composition is a foamable composition, and further comprises a propellant.
  • a propellant Any compatible propellant can be used.
  • the propellant is a gas at room temperature under normal pressure and which can be liquefied at increased pressure at room temperature.
  • propellants include, without limitation, hydrocarbon propellants such as butane, propane, isobutane, dimethyl ether, fluorocarbons such as 1,1,1,2 tetrafluoroethane (Dymel 134a), and 1,1,1,2,3,3,3 heptafluoropropane (Dymel 227), and mixtures thereof.
  • a hydrocarbon mixture AP-70 a mixture of about 30% w/w butane, 20% w/w isobutane and 50% w/w propane is used.
  • the composition comprises about 0.1% w/w to about 0.3% w/w of fumed (modified) silica. In one or more embodiments, the composition comprises about 1% w/w to about 4% w/w of minocycline hydrochloride or a doxycycline or a tetracycline antibiotic. In one or more embodiments, the composition comprises about 3% w/w to about 15% w/w of propellant based on the weight of the total composition. In one or more embodiments, the composition comprises about 3% w/w to about 25% w/w of propellant based on the weight of the total composition.
  • the composition comprises about 3% w/w to about 35% w/w of propellant based on the weight of the total composition. In one or more embodiments, the composition comprises about 5% w/w to about 30% w/w of propellant based on the weight of the total composition.
  • the composition is free of one or more of a petrolatum, surface active agents, protic solvents, certain polar aprotic solvents, isopropyl myristate, polyethylene gelling agents, polyethylene homopolymers, polyethylene copolymers, selenium derivatives and silicone thickening agents; and in certain embodiments, the foamable composition is substantially free of such excipients.
  • the term “substantially-free” relates to a composition that contains a total of less than about 0.4% of a petrolatum, surface active agents, protic solvents, certain polar aprotic solvents, isopropyl myristate, polyethylene gelling agents, polyethylene homopolymers, polyethylene copolymers, selenium derivatives and silicone thickening agents cumulatively.
  • the composition comprises less than about 0.2% of two or more or all thereof by weight of petrolatum, surface active agents, protic solvents, certain polar aprotic solvents, isopropyl myristate, polyethylene gelling agents, polyethylene homopolymers, polyethylene copolymers, selenium derivatives and silicone thickening agents cumulatively or, and more preferably less than about 0.1% individually or of two or more or all thereof cumulatively.
  • the composition is substantially alcohol-free, i.e., free of short chain alcohols having up to 5 carbon atoms in their carbon chain skeleton. In other embodiments, the composition comprises less than about 5% by weight final concentration of short chain alcohols, for example, less than 2% by weight, or less than 1% by weight. In certain embodiments, the composition is free or substantially free of ethanol, propanol, butanol and pentanol.
  • standard surfactant or “customary surfactant” refers herein to customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and amphiphilic surfactants.
  • a fatty alcohol or a fatty acid and certain waxes are not regarded as a standard surfactant.
  • ethers or esters formed from such fatty alcohols or fatty acids can be regarded as a customary surfactant.
  • Surfactants of all kinds are undesirable in accordance with the present compositions and methods as (i) they were found to cause degradation of the tetracycline antibiotic; and (ii) they are generally known to possess irritation potential.
  • Non-limiting examples of classes of non-ionic surfactants that are undesirable according to the present invention include: (i) polyoxyethylene sorbitan esters (polysorbates), such as polysorbate 20, polysorbate 40, polysorbate 60 and polysorbate 80; (ii) sorbitan esters, such as sorbitan monolaurate and sorbitan monooleate; (iii) polyoxyethylene fatty acid esters, such as, PEG-8 stearate, PEG-20 stearate, PEG-40 stearate, PEG-100 stearate, PEG-150 distearate, PEG-8 laurate, PEG-10 laurate, PEG-12 laurate, PEG-20 laurate, PEG-8 oleate, PEG-9 oleate, PEG-10 oleate, PEG-12 oleate, PEG-15 oleate and PEG-20 oleate; (iv) PEG-fatty acid diesters; (v) polyethylene glycol (PEG)
  • fatty alcohols, fatty acids, and certain waxes are somewhat amphiphilic, these substances are not effective as stand-alone surfactants that can stabilize an emulsion, let alone foamable emulsion compositions, because of their very weak emulsifying capacity and further due to their weak foaming capacity on their own.
  • surfactants are known to possess irritation potential.
  • the identification of formulations which produce gels and quality breakable foam yet omit customary surfactants from a composition can contribute to improved tolerability of such a composition and can be an important advantage. This is especially so when a formulation is to be applied to a very sensitive target site, and particularly so on a repeated basis.
  • the composition is free of customary surfactants, also known as “surfactant-free,” and in certain embodiments, the foamable composition is substantially free of customary surfactants, also known as “substantially surfactant-free”.
  • the composition is free or substantially free of an ionic surfactant. In certain embodiments, the composition is free or substantially free of a zwitterionic surfactant. In certain embodiments, the composition is free or substantially free of a non-ionic surfactant.
  • Protic solvents such as short chain alcohols, glycols and glycerin are incompatible with tetracyclines and therefore are undesirable.
  • the composition is free or substantially free of protic solvents.
  • aprotic polar solvents such as dimethyl sulfoxide (DMSO), dimethylformamide (DMF), acetonitrile, acetone, methyl ethyl ketone, 1,4-Dioxane and tetrahydrofuran (THF), N-methylpyrrolidone, pyridine, piperidine, dimethylformamide, N-methyl-2-pyrrolidone and 1-methyl-2-pyrrolidinone) and azone (1-dodecylazacycloheptan-2-one) are undesirable.
  • the composition is free or substantially free of aprotic polar solvents.
  • Silicone thickening agents comprise one or more polysiloxane-derived components. Such polysiloxanes are typically cross-linked and they have rubber-like characteristics, which require their solubilization in an oil, usually a silicone oil.
  • An example of such a silicone thickening agent is ST-Elastomer 10 (Dow Corning), which is a mixture of high molecular weight dimethicone crosspolymer (12%), in cyclopentasiloxane (cyclomethicone, silicone solvent).
  • cyclomethicone in the context of a breakable foam, is known as a defoamer and therefore its presence in high concentrations in the breakable hydrophobic composition is undesirable.
  • the composition is free or substantially free of silicone thickening agents other than cyclomethicone.
  • the drug carrier is formulated substantially free of elastomers. In one or more other specific embodiments, the drug carrier is formulated essentially free of elastomers. In one or more other specific embodiments, the drug carrier is formulated substantially free of silicones. In one or more other specific embodiments, the drug carrier is formulated essentially free of silicones.
  • the drug carrier is formulated with less than about 30% silicones, or less than about 25% silicones, or less than about 20% silicones, or less than about 15% silicones, or less than about 10% silicones, or less than about 7.5% silicones, or less than about 5% silicones or less than about 2% silicones; or less than about 1% silicones; or less than about 0.5% silicones; or about 1% to about 5% silicones; or about 0.5% to about 3% silicones.
  • the drug carrier does not comprise a silicone other than cyclomethicone.
  • the drug carrier does not comprise one or more volatile silicones. In other embodiments, volatile silicones are present at about 3% or less.
  • semi-solid hydrophobic oils are a subsidiary component in the composition, for example being present at less than about 45%, at less than about 40%, at less than about 35%, at less than about 30%, at less than about 25%, less than about 20%, less than about 15%, less than about 10%, or less than about 5% by weight of the composition.
  • semi-solid oils are omitted.
  • polyol is an organic substance that contains at least two hydroxyl groups in its molecular structure.
  • the polyol is a diol (a compound that contains two hydroxyl groups in its molecular structure).
  • diols examples include propylene glycol (e.g., 1,2-propylene glycol and 1,3-propylene glycol), butanediol (e.g., 1,2-butanediol, 1,3-butanediol, 2,3-butanediol and 1,4-butanediol), butanediol (e.g., 1,3-butanediol and 1,4-butenediol), butynediol, pentanediol (e.g., pentane-1,2-diol, pentane-1,3-diol, pentane-1,4-diol, pentane-1,5-diol, pentane-2,3-diol and pentane-2,4-diol), hexanediol (e.g., hexane-1,6-diol hex
  • the polyol is a triol (a compound that contains three hydroxyl groups in its molecular structure), such as glycerin, butane-1,2,3-triol, butane-1,2,4-triol and hexane-1,2,6-triol.
  • triol a compound that contains three hydroxyl groups in its molecular structure
  • the polyol is a saccharide.
  • Exemplary saccharides include, but are not limited to, monosaccharides, disaccharides, oligosaccharides, and sugar alcohols.
  • a monosaccharide is a simple sugar that cannot be hydrolyzed to smaller units.
  • Exemplary monosaccharide compounds are ribose, glucose, fructose, and galactose.
  • Disaccharides are made up of two monosaccharides joined together, such as sucrose, maltose, and/or lactose.
  • the polyol is a sugar alcohol (also known as a polyol, polyhydric alcohol, or polyalcohol) or a hydrogenated form of saccharide, whose carbonyl group (aldehyde or ketone, reducing sugar) has been reduced to a primary or secondary hydroxyl group.
  • sugar alcohol also known as a polyol, polyhydric alcohol, or polyalcohol
  • carbonyl group aldehyde or ketone, reducing sugar
  • Some exemplary sugar alcohols which are suitable for use according to the present disclosure are mannitol, sorbitol, xylitol, maltitol, lactitol.
  • the composition is polyol free, i.e., free of polyols.
  • the composition is substantially free and comprises less than about 5% final concentration of polyols, preferably less than 2%, more preferably less than 1%; or about 1% to about 5% polyols; or about 0.5% to about 3% polyols.
  • the composition comprises de minimis amounts of polyols. Where a formulation includes insignificant or de minimis amounts of polyols, such as less than 0.05%, the formulation is considered to be essentially free of them.
  • the polyol is linked to a hydrophobic moiety.
  • a polyol linked to a hydrophobic moiety is still defined as a “polyol” as long as it still contains two or more free hydroxyl groups.
  • the polyol is linked to a hydrophilic moiety.
  • a polyol linked to a hydrophilic moiety is still defined “polyol” as long as it still contains two or more free hydroxyl groups.
  • the hydrophobic composition further contains an anti-infective agent, comprises or selected from the group of an antibiotic agent, an antibacterial agent, an antifungal agent, an agent that controls yeast, an antiviral agent, and an antiparasitic agent.
  • the anti-infective agent comprises a tricyclic antibiotic.
  • hydrophobic based water-free formulation can maximize the antimicrobial and antiviral potentials of the formulations.
  • Delivery topically can be improved by using a hydrophobic carrier with a hydrophobic API.
  • Storage in sealed, light and airtight canisters can assist in preserving the formulations.
  • the hydrophobic composition is substantially free of at least one or more of surface active agents, protic solvents, polar aprotic solvents, and silicone thickening agents.
  • the hydrophobic composition is substantially free of at least one or more of surface active agents, polymeric gelling agents, polyols, short chain alcohols, and silicone thickening agents.
  • the hydrophobic composition contains less than about 0.4% by weight of the composition; or less than about 0.2% by weight of the composition; or less than about 0.1% by weight of the composition of one of or a combination of two, three or all of surface active agents, protic solvents, polar aprotic solvents, and silicone thickening agents.
  • any composition of the present disclosure can also contain a fragrance.
  • the fragrance is at a concentration of about 0.1% by weight to about 1% by weight.
  • the composition comprises about 35% w/w to about 65% w/w of soybean oil. In one or more embodiments, the composition comprises about 16.5% w/w to about 30.7% w/w of coconut oil. In one or more embodiments, the composition comprises about 3.5% w/w to about 6.5% w/w of cyclomethicone. In one or more embodiments, the composition comprises about 2% w/w to about 3.7% w/w of light mineral oil.
  • the composition comprises about 2.5% w/w to about 4.6% w/w of cetostearyl alcohol. In one or more embodiments, the composition comprises about 2% w/w to about 4% w/w of stearic acid. In one or more embodiments, the composition comprises about 1.8% w/w to about 3.3% w/w of myristyl alcohol. In one or more embodiments, the composition comprises about 1% w/w to about 2% w/w of stearyl alcohol. In one or more embodiments, the composition comprises about 0.5% w/w to about 1.5% w/w of behenyl alcohol.
  • the composition comprises about 1% w/w to about 3% w/w of hydrogenated castor oil. In one or more embodiments, the composition comprises about 1% w/w to about 3% w/w of beeswax.
  • the composition comprises about 48% w/w to about 51% w/w of soybean oil. In one or more embodiments, the composition comprises about 23% w/w to about 24% w/w of coconut oil. In one or more embodiments, the composition comprises about 4% w/w to about 6% w/w of cyclomethicone. In one or more embodiments, the composition comprises about 1% w/w to about 5% w/w of light mineral oil.
  • the composition comprises about 3% w/w to about 4% w/w of cetostearyl alcohol. In one or more embodiments, the composition comprises about 2% w/w to about 4% w/w of stearic acid. In one or more embodiments, the composition comprises about 2% w/w to about 3% w/w of myristyl alcohol. In one or more embodiments, the composition comprises about 1% w/w to about 2% w/w of stearyl alcohol. In one or more embodiments, the composition comprises about 0.5% w/w to about 1.5% w/w of behenyl alcohol.
  • the composition comprises about 1% w/w to about 3% w/w of hydrogenated castor oil. In one or more embodiments, the composition comprises about 1% w/w to about 3% w/w of beeswax.
  • the composition comprises about 0.1% w/w to about 0.3% w/w of fumed (modified) silica. In one or more embodiments, the composition comprises about 1% w/w to about 4% w/w of minocycline hydrochloride or a doxycycline or a tetracycline antibiotic. In one or more embodiments, the composition comprises about 3% w/w to about 15% w/w of propellant based on the weight of the total composition.
  • the tetracycline composition further comprises an additional active agent selected from the group consisting of an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist, a vasoconstrictor and mixtures of any two or more thereof.
  • the tetracycline composition further comprises an additional active agent selected from the group consisting of ivermectine, metronidazole, azelastine, oxymetazoline, brimonidine and mixtures of any two or more thereof.
  • the tetracycline composition further comprises at least one of an additional active selected from an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist or a vasoconstrictor.
  • the tetracycline composition further comprises at least one of an additional active selected from ivermectine, metronidazole, azelastine, oxymetazoline or brimonidine.
  • the tetracycline composition further comprises at least one of an additional active selected from an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist or a vasoconstrictor, wherein the composition is configured for the treatment of rosacea.
  • the tetracycline composition further comprises at least one of an additional active selected from ivermectine, metronidazole, azelastine, oxymetazoline or brimonidine, wherein the composition is configured for the treatment of rosacea.
  • the composition comprises an active agent selected from the group consisting of an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist, a vasoconstrictor and mixtures of any two or more thereof.
  • the composition comprises an active agent selected from the group consisting of ivermectine, metronidazole, azelastine, oxymetazoline, brimonidine and mixtures of any two or more thereof.
  • the composition comprises at least one active agent selected from an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist and a vasoconstrictor.
  • the composition comprises at least one active agent selected from the group consisting of ivermectine, metronidazole, azelastine, oxymetazoline, brimonidine and mixtures of any two or more thereof.
  • the composition comprises at least one active agent selected from an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist and a vasoconstrictor, wherein the composition is configured for the treatment of rosacea.
  • the composition comprises at least one active agent selected from ivermectine, metronidazole, azelastine, oxymetazoline and brimonidine, wherein the composition is configured for the treatment of rosacea.
  • the composition is configured to treat a disorder selected from an inflammatory disorders, non inflammatory disorders, atopic dermatitis, acne, dermatitis, impetigo, psoriasis and rosacea.
  • the composition is configured to treat at least one disorder selected from an inflammatory disorder, non inflammatory disorder, atopic dermatitis, acne, dermatitis, impetigo, psoriasis and rosacea.
  • a method for treatment of rosacea wherein the tetracycline composition comprises an additional agent, wherein the additional agent is selected from tetracycline antibiotic, ivermectin, azelaic acid, azelastine, isotretinoin, metronidazole, brimonidine, oxymetazoline, xylometazolin, sodium sulfacetamide and sulfur, tretinoin, a retinoid, an anti parasitic agent, an azole, an anti-histamine, ⁇ 1 and ⁇ 2 adrenergic receptor agonist and a vasoconstrictor.
  • the additional agent is selected from tetracycline antibiotic, ivermectin, azelaic acid, azelastine, isotretinoin, metronidazole, brimonidine, oxymetazoline, xylometazolin, sodium sulfacetamide and sulfur, tretinoin, a reti
  • the ingredients of the carrier can be selected for their compatibility with tetracycline antibiotics as described. In one or more embodiments it was not sufficient to identify single ingredients that were compatible with tetracycline antibiotics but formulations had to be found in which the ingredients in combination were also compatible with tetracycline antibiotics.
  • topical tetracycline treatments can be given with or followed by application of a steroid or a hyaluronic acid or a collagen or a silicone, clindamycin, or metronidazole, or erythromycin, or ivermectin, or azelaic acid, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, or a retinoid or mixtures of any two or more thereof, for example to ameliorate or reduce scarring or skin damage effects.
  • treatment with topical tetracycline of dry eyes caused by ocular rosacea could be followed with liquid tears and cleaning of eyelids every day with warm water.
  • Therapeutic topical compositions must stay on the skin for a sufficient period of time to allow the active agent to be absorbed onto the skin, to perform its activity and to further exert a preventative effect. They should preferably not irritate the skin; and they should be perceived by the patient as pharmaceutically convenient in order to achieve sufficient patient compliance.
  • pharmaceutically convenient it is meant that the skin look and feel to the patient is good, i.e., it must not be too watery or too greasy and it must easily be applied.
  • compositions having an ointment base are greasiness; these compositions are generally considered less usable in the case of facial treatment of rosacea.
  • Another disadvantage is that many known compositions contain surfactants, which can be irritants. It is therefore an advantage of the compositions provided herein that they are breakable gels or foams; and therefore are easy to apply to the skin and also avoid skin irritation that has been associated with compositions containing surfactants
  • Breakable gels which comprise liquid oils and a thickening agent, are also very convenient for use, as they liquefy on application of mild shear force such as gentle rubbing, and in turn, they readily absorb onto the skin.
  • Foam is advantageous in the topical treatment of skin diseases, especially in skin afflicted with rosacea, since it is light and easy to apply and collapses and spreads with a minor mechanical force like a simple rub.
  • drug delivery in the form of foam can also cover a larger surface area of application while also facilitating better product application in areas where conventional topical products cannot be as effective.
  • Foam absorbs rapidly—without the need of repeated rubbing—which is helpful and important for treatment of damaged or irritated skin, sores, and lesions. As the composition is absorbed quickly, this can contribute to a positive treatment effect by the vehicle alone, or when in combination with the active agent, a higher percentage effect by the active agent may be observed.
  • Thermally stable foam which breaks upon application of mild shear force is extremely advantageous in the topical treatment of skin diseases. It can be applied directly onto skin or hands of the patient without collapsing.
  • the hydrophobic compositions according to the description provided herein facilitate easy application and even distribution of the active agent, thereby improving treatment convenience. This is in contrast to a temperature sensitive foam that collapses immediately on the skin so that it must first be applied onto a cool surface and then quickly applied using fingertips onto the surface, which can impede patient compliance
  • the formulation packaged into an aerosol container is devoid of any contact with air, light, or any other form of contamination (e.g., moisture) as it is a completely sealed system throughout the life of the product.
  • contamination e.g., moisture
  • hydrophobic compositions disclosed herein can be applied to the target site as a gel or a semi-solid gel or foam. In certain other embodiments, it can be applied as a liquid gel or as a collapsed foam. In one or more embodiments, the composition is thixotropic. In one or more embodiments, the gel formulation subjected to constant shear rate shows a reduction in viscosity with time. In one or more further embodiments, after the material is allowed to rest for a period of time, the viscosity increases again. In one or more embodiments, there is provided prior to adding propellant a solid or semi-solid composition or gel. In one or more embodiments, the composition or gel is a liquid. In one or more embodiments the propellant is miscible with and dilutes the composition.
  • a shakable and homogenous foamable composition results, which upon dispensing, forms a breakable foam with good to excellent quality.
  • the resulting foam is pharmaceutically equivalent to the respective gel (prior to adding the propellant), since immediately upon dispensing of the foam the propellant evaporates and the composition, upon collapse, is similar or identical to that of the gel.
  • such a composition is presented as a breakable gel, which breaks down with mild mechanical force.
  • the hydrophobic composition when packaged in an aerosol container to which is added a liquefied or compressed gas propellant the composition provides upon release from the container a breakable foam of at least good quality that breaks easily upon application of mechanical force.
  • the composition is a foamable composition that is thermally stable at skin temperature.
  • a foamable composition when the above composition is filled into an aerosol can or canister and pressurized with a propellant a foamable composition is produced.
  • a hydrophobic foamable composition (e.g., foam or gel) provided herein comprises: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) about 1% to about 22% by weight of at least one viscosity modifying agent; and c) about 0.1% to about 18% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate
  • a hydrophobic foamable composition (e.g., foam or gel) provided herein comprises: a) about 60% to about 99% by weight of at least one hydrophobic solvent or carrier; b) about 1% to about 22% by weight of at least one viscosity modifying agent; c) about 0.1% to about 18% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 70% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 0.5% to about 8% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate.
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 70% to about 90% by weight of at least one hydrophobic solvent or carrier; b) about 10 to about 22% by weight of at least one viscosity modifying agent; c) about 0.5% to about 8% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 75% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 0.5% to about 2% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate.
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 75% to about 90% by weight of at least one hydrophobic solvent or carrier; b) about 10 to about 22% by weight of at least one viscosity modifying agent; c) about 0.5% to about 2% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 88% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 2% to about 6% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 98% by weight of at least one hydrophobic solvent; b) about 1% to about 18% by weight of at least one viscosity modifying agent; and c) about 1% to about 10% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate.
  • a hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 88% by weight of at least one hydrophobic solvent or carrier; b) about 10 to about 22% by weight of at least one viscosity modifying agent; c) about 2% to about 6% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
  • a tetracycline antibiotic e.g., minocycline HCl or doxycycline hyclate
  • the hydrophobic gel or foam composition for use in the method comprises: a) about 60% to about 95% by weight of at least one hydrophobic solvent or carrier; b) at least one viscosity-modifying agent selected from the group consisting of a fatty alcohol, a fatty acid, and a wax; c) a therapeutically effective amount of a tetracycline antibiotic; and d) an additional active agent.
  • a hydrophobic foam or gel composition comprising: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 2.8% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; about 2% by weight of hydrogenated castor oil; h) about 2% by weight of beeswax; i) about 1.5% by weight of stearyl alcohol; j) about 1.1% by weight of behenyl alcohol; and k) about 3% by weight of minocycline.
  • a hydrophobic foam or gel composition comprising: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 4.3% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; and l) about 1.5% by weight of minocycline.
  • a hydrophobic foam or gel composition comprising: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 2% to about 3.7% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; h) about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k) about 0.8% to about 1.4% by weight of behenyl alcohol; and l) about 2.1% to about 4% by weight of minocycline.
  • a hydrophobic foam or gel composition comprising: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 3% to about 5.6% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; h) about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k) about 0.8% to about 1.4% by weight of behenyl alcohol; and l) about 1% to about 2% by weight of minocycline.
  • a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 2.8% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; and l) about 3% by weight of minocycline.
  • the topical composition comprises: a) about 50% by weight of soybean oil;
  • a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 4.3% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; and l) about 1.5% by weight of minocycline.
  • the topical composition comprises: a) about 50% by weight of soybean oil;
  • a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 2% to about 3.7% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k)
  • a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 3% to about 5.6% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; h) about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol;
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 57.6% to about 87.5% by weight of heavy mineral oil; b) about 3.5% to about 6.5% by weight of light mineral oil; c) about 3.2% to about 5.9% by weight of stearyl alcohol; d) about 1.75% to about 3.25% by weight of stearic acid; e) about 0.8% to about 1.4% by weight of behenyl alcohol; and f) about 3.3% to about 6.1% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 65.8% to about 86% by weight of heavy mineral oil; b) about 4% to about 6% by weight of light mineral oil; c) about 3.6% to about 5.4% by weight of stearyl alcohol; d) about 2% to about 3% by weight of stearic acid; e) about 0.9% to about 1.3% by weight of behenyl alcohol; and f) about 3.7% to about 5.6% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 74% to about 84% by weight of heavy mineral oil; b) about 4.5% to about 5.5% by weight of light mineral oil; c) about 4.1% to about 5% by weight of stearyl alcohol; d) about 2.3% to about 2.8% by weight of stearic acid; e) about 1% to about 1.2% by weight of behenyl alcohol; and f) about 4.2% to about 5.1% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 31.8% to about 59.2% by weight of light mineral oil; b) about 31.5% to about 58.5% by weight of soybean oil; c) about 2.8% to about 5.2% by weight of stearyl alcohol; d) about 0.2% to about 0.8% by weight of behenyl alcohol; and e) about 3.3% to about 6.2% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 82.24% by weight of heavy mineral oil; b) about 5% by weight of light mineral oil; c) about 4.5% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 1.1% by weight of behenyl alcohol; and f) about 4.66% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 62% to about 91.7% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 2.6% to about 4.8% by weight of stearyl alcohol; c) about 1.75% to about 3.25% by weight of stearic acid; d) about 0.5% to about 0.9% by weight of behenyl alcohol; e) about 0.14% to about 0.26% by weight of paraffin 51-53; and f) about 3.3% to about 6.1% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 70.6% to about 90.6% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 3% to about 4.4% by weight of stearyl alcohol; c) about 2% to about 3% by weight of stearic acid; d) about 0.56% to about 0.84% by weight of behenyl alcohol; e) about 0.16% to about 0.24% by weight of paraffin 51-53; and f) about 3.7% to about 5.6% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 79.4% to about 89.4% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 3.3% to about 4.1% by weight of stearyl alcohol; c) about 2.3% to about 2.8% by weight of stearic acid; d) about 0.63% to about 0.77% by weight of behenyl alcohol; e) about 0.18% to about 0.22% by weight of paraffin 51-53; and f) about 4.2% to about 5.6% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 63% to about 98% by weight of heavy mineral oil; b) about 0.1% to about 15% by weight of light mineral oil; c) about 0.5% to about 7% by weight of stearyl alcohol; d) about 0.5% to about 5% by weight of stearic acid; e) about 0.2% to about 2% by weight of behenyl alcohol; and f) about 1% to about 8% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 73% to about 98% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 0.5% to about 7% by weight of stearyl alcohol; c) about 0.5% to about 5% by weight of stearic acid; d) about 0.2% to about 2% by weight of behenyl alcohol; e) about 0.1% to about 5% by weight of paraffin 51-53; and f) about 1% to about 8% by weight of minocycline hydrochloride or doxycycline hyclate.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 81.94% by weight of heavy mineral oil; b) about 5% by weight of light mineral oil; c) about 4.5% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 1.1% by weight of behenyl alcohol; f) about 4.66% by weight of minocycline hydrochloride or doxycycline hyclate; and g) about 0.3% by weight of adapalene.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 82% by weight of heavy mineral oil; b) about 5% by weight of light mineral oil; c) about 4.5% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 1.1% by weight of behenyl alcohol; f) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and g) about 0.1% by weight of adapalene.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 88.6% by weight of heavy mineral oil; b) about 3.6% by weight of stearyl alcohol; c) about 2.4% by weight of stearic acid; d) about 0.5% by weight of behenyl alcohol; e) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and f) about 0.1% by weight of adapalene.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 0.7% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; 1) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and m) about 0.3% by weight of adapalene.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 49% by weight of heavy mineral oil; b) about 39% by weight of light mineral oil; c) about 3.8% by weight of stearyl alcohol; d) about 2.4% by weight of stearic acid; e) about 0.7% by weight of behenyl alcohol; f) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and g) about 0.3% by weight of adapalene.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 43.4% by weight of heavy mineral oil; b) about 39% by weight of light mineral oil; c) about 4.3% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 5% by weight of cyclomethicone; f) about 0.7% by weight of behenyl alcohol; g) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and h) about 0.3% by weight of adapalene.
  • the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 45.55% by weight of light mineral oil; b) about 45.05% by weight of soybean oil; c) about 4.0% by weight of stearyl alcohol; d) about 0.6% by weight of behenyl alcohol; e) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate.
  • compositions provided or described herein comprise a carrier and a propellant.
  • the carrier comprises or is a hydrophobic gel or foamable composition provided or described herein.
  • the composition is a gel, paste, lotion, cream, soap, spray, mask, patch, powder, pomade, ointment, oil, foam or mousse.
  • the composition is hydrophobic.
  • the composition comprises hydrophobic oils and waxes.
  • the composition comprises fatty alcohols.
  • the composition comprises hydrophobic oils and fatty alcohols.
  • the composition comprises fatty acids.
  • the composition comprises hydrophobic oils and fatty acids.
  • the composition is surfactant free.
  • the composition is substantially free of a fatty acid or of a fatty alcohol or of a wax or any two thereof. In one or more embodiments, the composition is essentially free of a fatty acid or of a fatty alcohol or of a wax or any two thereof. In one or more embodiments, the composition is free of a fatty acid or of a fatty alcohol or of a wax or any two thereof.
  • the hydrophobic composition comprises a gelled oil.
  • the gelled oil is a gelled mineral oil.
  • the gelled mineral oil is a VERSAGEL®.
  • VERSAGELs® are gelled oils or emollients that can come in different product forms including, for example, the VERSAGEL® m, VERSAGEL® p, VERSAGEL® r, and VERSAGEL® s series, and provide various viscosity grades. There are also VERSAGELs® with isohexadecane, or with isododecane, or with hydrogenated polyisobutene, or with isopropylpalmitate.
  • VERSAGEL® 750 m. In an embodiment, it is VERSAGEL® 200 m. In an embodiment, it is VERSAGEL® 500 m. In an embodiment, it is VERSAGEL® 1600 m.
  • VERSAGEL® m contains a mixture of mineral oil plus one or two or more of e.g., Ethylene/Propylene/Styrene Copolymer plus e.g., Butylene/Ethylene/Styrene Copolymer plus e.g., butylated hydroxyl toluene or similar gelling agents. In one or more embodiments, the gelled oil is at a concentration of about 55% to about 85% by weight.
  • the gelled oil is at a concentration of about 60% to about 80% by weight. In one or more embodiments, gelled oil is at a concentration of about 65% to about 75% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 75% to about 90% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 21% to about 39% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 26% to about 34% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 9% to about 24% by weight.
  • the hydrophobic solvent comprises a petrolatum at a concentration of about 9% to about 24% by weight, or about 26% to about 34% by weight or about 21% to about 39% by weight, or about 45% by weight, or about 50% by weight or about 55% by weight or about 60% by weight.
  • Topical hydrophobic therapeutic breakable gel and foamable compositions comprising tetracycline, including those without surfactants, have been described, for example in U.S. application Ser. Nos. 13/499,501, 13/499,727, 13/499,475, and 13/499,709, U.S. Publication No. 2011/0281827, WO 11/039637, WO 11/039638, WO 11/138678 and WO 2011/064631, all of which are herein incorporated in their entirety by reference.
  • any of the active ingredients, carriers, solvents, surfactants, foam adjuvants, fatty acids, fatty alcohols, polymeric agents, penetration enhancers, preservatives, humectants, moisturizers, and other excipients, as well as the propellants and methods listed therein can be applied herein and are incorporated by reference.
  • any of the active ingredients, carriers, solvents, surfactants, foam adjuvants, polymeric agents, penetration enhancers, preservatives, humectants, moisturizers, and other excipients, as well as the propellants and methods listed therein can be applied herein and are incorporated by reference.
  • the present disclosure also provides a method of manufacturing a gel or foam composition having a tetracycline antibiotic, the method comprising: providing a composition having one or more hydrophobic solvents; heating said composition; adding fatty alcohols, fatty acids and waxes; cooling said composition; optionally adding SiO 2 ; and adding a tetracycline antibiotic.
  • compositions provided herein are manufactured according to the methods described in the art and as described in Example 1.
  • Gels are usually packaged in a tube but can also be packaged in any other convenient delivery form including for example, bottles with a pump mechanism or canisters such as bag in can devices where propellant is separate from the gel.
  • Foam formulations are usually packed in a container with an outlet valve e.g., aerosol canister. Possible containers and valves are likewise described in the literature as known by those skilled in the art.
  • both the minocycline and the foamable compositions containing minocycline can be manufactured under current Good Manufacturing Principles (cGMP) conditions.
  • the foamable composition was provided in aluminum aerosol canisters mounted with valve and actuator. Each canister was filled with 25 g of product and 3 g of propellant. Upon actuation of the canister an aliquot of quality foam was released.
  • a method of administering a tetracycline foam composition to a target area such as skin of a patient comprising releasing foam, applying it to the area, and collapsing the foam.
  • the foam is applied by spreading. In the course of spreading mechanical shear can cause the foam to collapse.
  • the collapsed foam is not washed off.
  • it is absorbed onto the area of skin. In one or more embodiments it avoids skin irritation or an ointment sensation.
  • a method of applying a tetracycline gel composition to an area of skin of a patient comprising releasing a gel, applying it to the area, and collapsing or liquefying the gel.
  • the collapsed or liquefied gel is not washed off.
  • the collapsed or liquefied gel is readily absorbed and does not leave an ointment sensation.
  • a method for reducing the number of rosacea lesions by applying topically an effective amount of a tetracycline gel, liquid gel or foam to an afflicted area of a patient in need.
  • the method involves applying a gel, liquid, gel or foam formulation topically to a target surface in need of treatment and breaking the gel or foam over the target site.
  • the gel or foam is collapsed and spread by application of a mechanical force, which can be mild or slight such as a simple rub and the active agent is then absorbed.
  • the foam or gel is absorbed.
  • a gel or a liquid gel or a collapsed foam is absorbed within 240 seconds, or within 200 seconds, or within 180 seconds, or within 150 seconds, within 120 seconds, or within 100 seconds, or within 80 seconds, or within 60 seconds, or within 50 seconds, or within 40 seconds, or within 30 seconds, or within 20 seconds, or within 10 seconds, or within 5 seconds, or within 2 seconds or less.
  • the term “absorbed” means that the composition enters onto and into an area of skin, mucosa or eye, often forming a thin coating on the surface.
  • the method uses an additional step of pre cleaning and drying the lesions and surrounding area before applying the gel, liquid gel or foam.
  • the method uses a sterile applicator or prior to the steps of administering and/or collapsing and/or spreading, the hands of the person spreading are sterilized in order to avoid cross contamination.
  • the method comprises an additional step of applying an active agent to the lesions and surrounding area after the gel, liquid gel or foam has been absorbed, wherein the active agent is a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or doxycycline, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin.
  • the active agent is a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or doxycycline, or erythromycin, or ivermec
  • the active agent such as, for example, a hyaluronic acid, a retinoid, BPO, salicylic acid, an alpha hydroxy acid, azelaic acid, a nicotinamide, a keratolytic agent, clindamycin, metronidazole, erythromycin, ivermectin, brimonidine, sodium sulfacetamide and sulfur, tretinoin, or mixtures of two or more thereof, is applied once daily at least 1 or 2 or 3 or 4 or 5 or 6 or 7 or 8 or 9 or 10 or 11 or 12 hours after the tetracycline antibiotic formulation has been absorbed.
  • the active agent such as, for example, a hyaluronic acid, a retinoid, BPO, salicylic acid, an alpha hydroxy acid, azelaic acid, a nicotinamide, a keratolytic agent, clindamycin, metronidazole, erythromycin, iver
  • the active agent such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is applied after the third day.
  • a hyaluronic acid or a retinoid or BPO or salicylic acid or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin
  • the active agent such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is applied during the maintenance stage.
  • a hyaluronic acid or a retinoid or BPO or salicylic acid or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin
  • the active agent such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is replaced with or supplemented by a steroid.
  • a hyaluronic acid or a retinoid or BPO or salicylic acid or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin
  • the active agent such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent or steroid, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is replaced with or supplemented by an antibiotic.
  • a hyaluronic acid or a retinoid or BPO or salicylic acid or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent or steroid, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin
  • the antibiotic which is in addition to one or more tetracycline antibiotics, is selected from the group consisting of mupirocin, fusidic acid, a penicillin or penicillin derivative, augmentin, an anti staphylococcal penicillin, amoxicillin/clavulanate, a cephalosporin, cephalexin, a macrolide, erythromycin, clindamycin, trimethoprim-sulfamethoxazole penicillin, rumblemulin, and mixtures of any two or more thereof.
  • the antibiotic is applied topically. In another embodiment it is applied orally or by injection or by infusion. In another embodiment more than one antibiotic is applied. For example, one is applied topically and another is given orally. The latter can be appropriate for example where there is a systemic as well as a topical bacterial infection.
  • a regime or regimen for treating a patient having one or more of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder which comprises applying to the afflicted area on a regular basis a hydrophobic gel or foam composition, said composition comprising a therapeutically effective amount of a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, once a day, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, twice a day, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, alternate-day or intermittently, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, gradual reduction to a lower maintenance dose, which can be increased if further outbreaks occur, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a maintenance dose can be applied topically, daily, alternate daily, twice weekly or weekly for a month, two months, quarterly, six months or indefinitely.
  • a maintenance dose can include about 0.9%, or about 0.8%, or about 0.7%, or about 0.6%, or about 0.5%, or about 0.4%, or about 0.3%, or about 0.2%, or about 0.1%, or about 0.09%, or about 0.08%, or about 0.07%, or about 0.06%, or about 0.05% by weight of a tetracycline antibiotic.
  • the maintenance dose can be commenced after four weeks of treatment, or after five weeks of treatment, or after six weeks of treatment, or after seven weeks of treatment, or after eight weeks of treatment, or after nine weeks of treatment, or after ten weeks of treatment, or after eleven weeks of treatment, or after twelve weeks of treatment, or after thirteen weeks of treatment, or after fourteen weeks of treatment, or after fifteen weeks of treatment, or after sixteen weeks of treatment.
  • a method for treating rosacea including administering topically, once daily for at least four weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, once daily up to four weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, once daily for twelve weeks or less than twelve weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, once daily for four weeks or less than four weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
  • a method for treating rosacea including administering topically, once daily for three weeks or less than three weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic. In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily for two weeks or less than two weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic
  • a method for treating a condition involving inflammation of the skin or mucosa including administering topically, once daily for six weeks or less than six weeks, to a surface having the disorder a gel of foam composition comprising a tetracycline antibiotic.
  • Application can be, hourly, every twelve hours (e.g., twice daily), once daily, alternate-day or intermittent, according to the condition of the patient. For reasons of compliance, less frequent applications, where possible, are preferable, e.g., daily single applications. In certain cases, where prolonged or long term treatment is required, an initial dose is provided followed by a gradual reduction to a lower maintenance dose, which can be increased if further outbreaks occur.
  • a hydrophobic gel or foam composition comprising a tetracycline antibiotic for use in treating one or more of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, including skin infections, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for twelve weeks or less than twelve weeks of treatment.
  • a hydrophobic gel or foam composition comprising a minocycline antibiotic for use in treating a disorder selected from the group consisting of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for at least six weeks to the skin, wherein the minocycline antibiotic is the sole active ingredient present in the composition.
  • a hydrophobic foam composition or gel comprising a tetracycline antibiotic for use in retarding, arresting, or reversing the progression of one or more of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic foam composition or gel is applied topically to the skin at least alternate days or at least once a day for at least six weeks.
  • the method uses a once daily dosage regime for twelve weeks or less than twelve weeks. In one or more embodiments the twelve-week dosage regime is followed by a once daily maintenance dose for one, two, three, four or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime for six weeks or less than six weeks. In one or more embodiments the six-week dosage regime is followed by a once daily maintenance dose for one, two, three, four or more weeks according to the condition and response of the patient.
  • the method uses a once daily dosage regime of for six weeks or less than six weeks followed by a once weekly maintenance dose for one, two, three, four, five, six, seven, eight, nine, ten, eleven or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime of for three weeks or less than three weeks followed by a once weekly maintenance dose for one, two, three, four, five, six, seven, eight, nine, ten, eleven or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime of for two weeks followed by a daily maintenance dose for one, two, three or more weeks according to the condition and response of the patient. In one or more embodiments the method uses a once daily dosage regime of for twelve weeks wherein the treatment is every alternate week.
  • the use of more than one active agent is advantageous.
  • psoriasis involves excessive cell proliferation and inadequate cell differentiation as well as inflammation.
  • Atopic dermatitis involves keratinocyte growth abnormality, skin dryness and inflammation.
  • Bacterial, fungal and viral infections involve pathogen colonization at the affected site and inflammation.
  • the inclusion of a combination of active agents in the pharmaceutical composition can be desirable.
  • the composition includes at least two active agents, in a therapeutically effective concentration.
  • a combination of any two or more of an antibacterial, an anti-inflammatory, an antifungal, and an antiviral agent is contemplated.
  • a tetracycline antibiotic is the sole active ingredient present in the composition.
  • a minocycline is the sole active ingredient present in the composition.
  • a doxycycline is the sole active ingredient present in the composition. In one or more embodiments minocycline and doxycycline are used in combination.
  • a combination of any two or more of a minocycline, retinoids, and benzoyl peroxide is contemplated
  • a combination of any two or more of a tetracycline, retinoids, and benzoyl peroxide is contemplated.
  • a combination of any two or more of benzoyl peroxide, antibiotics, retinoids, antiseborrheic medications, anti-androgen medications, hormonal treatments, salicylic acid, alpha hydroxy acid, azelaic acid, nicotinamide, and a keratolytic agent is contemplated.
  • the tetracycline is combined with adapalene.
  • Rosacea may begin as redness on the central face across the cheeks, nose, or forehead, but can also less commonly affect the neck, chest, ears, and scalp.
  • the symptoms can include additional signs, such as, for example, semi-permanent redness, dilation of superficial blood vessels on the face, red domed papules (small bumps) and pustules, red gritty eyes, burning and stinging sensations, and in some advanced cases, a red lobulated nose (rhinophyma), may develop.
  • Rosacea may affect all ages. Based on the location, rosacea generally has four subtypes, three affecting the skin and the fourth affecting the eyes (ocular rosacea).
  • rosacea there are several subtypes of rosacea including, for example, but not limited to, erythematotelangiectatic rosacea, papulopustular rosacea, phymatous rosacea, ocular rosacea, pyoderma faciale (also known as rosacea fulminans), rosacea conglobata, phymatous rosacea.
  • rosacea can include any of the known subtypes, known to one of skilled in the art.
  • rosacea is associated with the elevated levels of cathelicidins. In another embodiment, rosacea is associated with the elevated levels of a stratum corneum tryptic enzyme (SCTE). In yet another embodiment, rosacea is associated with parasitic mite, intestinal bacteria, or a combination thereof.
  • SCTE stratum corneum tryptic enzyme
  • a rosacea related disorder is any disorder which can occur in parallel with rosacea or be a contributing factor to the outbreak of rosacea or can resemble rosacea.
  • Perioral dermatitis is an erythematous, papulopustular facial eruption that resembles rosacea and/or acne but typically starts around the nose.
  • Rosacea (acne rosacea) is a chronic inflammatory disorder characterized by facial flushing, telangiectasias, erythema, papules, pustules, and in severe cases, rhinophyma.
  • Rosacea related symptoms include, papules, pustules, blackheads, whiteheads or milia, nodules and cysts.
  • Pyoderma faciale also called rosacea fulminans
  • Pyoderma faciale occurs suddenly on the midface of young women. It can be analogous to acne fulminans.
  • the eruption consists of erythematous plaques and pustules.
  • Minocycline can also have skin regenerating and healing properties responsible for restoration of skin integrity.
  • the combination of minocycline together with a hydrophobic solvent and a fatty alcohol or fatty acid can afford a beneficial effect in conditions characterized, for example, by infection and/or inflammation.
  • a method of maintenance therapy to prevent rosacea recurrence or reduce the severity of the rosacea recurrence, applied to a patient in need which comprises applying to the skin on a regular basis (as defined above) a hydrophobic gel or foam composition comprising a therapeutically effective amount of a tetracycline antibiotic
  • foamable composition containing minocycline was monitored at 5° C., 25° C., 40° C., and 50° C. during and after the clinical trials and satisfactory stability results were obtained (see, e.g., Example 4).
  • the systemic exposure of a Minocycline and/or Doxycylcine foam as disclosed herein is equal to or lower than that of an orally administered tetracycline (e.g., minocycline or doxycylcine), as evaluated in a PK Study.
  • an orally administered tetracycline e.g., minocycline or doxycylcine
  • the terms “systemic exposure,” “systemic absorption,” and “absorption” are used interchangeably.
  • the systemic exposure of an oral tetracycline or tetracycline foam may be determined based on a pharmacokinetic (PK) study as described in the Examples, e.g., Examples 5, 6 and 9.
  • PK pharmacokinetic
  • the minocycline or doxycycline foam may be administered to a subject once or multiple times and blood samples are obtained at various time points to determine the level of minocycline or doxycycline in plasma.
  • Various pharmacokinetic parameters can be calculated and used as an indicator of the systemic exposure, and compared to a control or base line (e.g., the level prior to treatment or the level after administration of an oral tetracycline).
  • One or more of the following pharmacokinetic parameters may be used as an indicator of the systemic exposure: C max (maximum plasma concentration), t max (time of maximum measured plasma concentration), AUC 0-inf (area under the plasma concentration vs time curve [AUC] from time 0 to infinity), AUC 0-tldc (AUC from time 0 to the time of last detectable concentration), t 1/2 (terminal phase half-life), C 24 (minocycline concentration 24 hours after topical application of minocycline foam 4%), AUC 0-tau (AUC during the 24-hour dosing interval for topical minocycline foam), and bioavailability.
  • C max maximum plasma concentration
  • t max time of maximum measured plasma concentration
  • AUC 0-inf area under the plasma concentration vs time curve [AUC] from time 0 to infinity
  • AUC 0-tldc AUC from time 0 to the time of last detectable concentration
  • t 1/2 terminal phase half-life
  • C 24 minocycline concentration 24 hours
  • a C max value is used as an indicator of the systemic exposure of a tetracycline (e.g., minocycline) foam described herein.
  • an AUC 0-inf value is used as an indicator of the systemic exposure of a tetracycline foam described herein.
  • an AUC 0-tldc value is used as an indicator of the systemic exposure of a tetracycline foam described herein.
  • an AUC 0-tau value is used as an indicator of the systemic exposure of a tetracycline foam described herein.
  • PK measurements are taken at one or more time points following administration of a tetracycline foam desired herein, e.g., 1 hour, 6 hours, 12 hours, 18 hours, 24 hours, 36 hours, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more days after administration, or any time period in between.
  • a tetracycline foam described herein is administered about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or more days after a single dose of an oral tetracycline and PK measurements are taken at one or more time points following administration of the tetracycline foam, e.g., about 1 hour, 6 hours, 12 hours, 18 hours, 24 hours, 36 hours, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more days after administration, or any time period in between.
  • a 4% Doxycycline foam pharmacokinetic (PK) study similar to that of a 4% Minocycline foam PK Study is undertaken.
  • a 1% or 2% or 3% Doxycycline foam PK Study is similar to that of a 1% or 2% or 3%, respectively, Minocycline foam PK Study is undertaken.
  • a 1% or 2% or 3% Minocycline foam PK Study is similar to that of a 4%, Minocycline foam PK Study.
  • the systemic exposure in a 1% or 2% or 3% Minocycline foam PK Study is lower than that of a 4% Minocycline foam PK Study.
  • a 1% or 2% or 3% Doxycycline foam PK Study is similar to that of a 4%, Doxycycline foam PK Study. In some embodiments the systemic exposure in a 1% or 2% or 3% Doxycycline foam PK Study is lower than that of a 4% Doxycycline foam PK Study.
  • absorption of a foam described herein is low as determined by a PK Study in comparison to a comparable dose of an orally administered tetracycline.
  • the C max determined on Day 1 after the first dose is about 0.2 ng/mL to about 5 ng/mL.
  • absorption of a foam described herein is low as determined by a PK study in comparison to a comparable dose of an orally administered tetracycline.
  • a C max is identified on Day 16 after the administration of the foam once a day for sixteen consecutive days and is about 0.2 ng/mL to about 12 ng/mL.
  • ng/mL is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL, or about 5.2 ng/mL, or about 5.4
  • absorption of a foam described herein is low as determined by a PK Study in comparison to a comparable dose of an orally administered tetracycline.
  • absorption is determined by a PK Study, and a C max is determined on Day 12 after the administration of the foam once a day for twelve consecutive days and is about 0.2 ng/mL to about 5 ng/mL.
  • ng/mL is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL.
  • absorption of a foam described herein is low as determined by a PK Study in comparison to a comparable dose of an orally administered tetracycline.
  • absorption is determined by a PK Study, and a C max is determined on Day 21 after the administration of the foam once a day for 21 consecutive days and is about 0.2 ng/mL to about 5 ng/mL.
  • the foam is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL.
  • the foam is about
  • absorption of a 4% tetracycline antibiotic e.g., minocycline or doxycycline foam as determined by a PK Study is about 800 times to about 50 times lower than that of a comparable dose of an oral doxycycline.
  • the 4% tetracycline antibiotic is a composition described herein.
  • the 4% tetracycline antibiotic is FMX-101, 4%, described herein.
  • a 4% tetracycline antibiotic foam described herein has about 800 times to about 50 times lower C max and/or AUC values as compared to the C max and/or AUC values of a comparable dose of an oral doxycycline (e.g., an approved dose of Oracea® such as 40 mg).
  • a comparable dose of an oral doxycycline e.g., an approved dose of Oracea® such as 40 mg.
  • it may be about 800 times lower, or about 750 times lower, or about 700 times lower, or about 650 times lower, or about 600 times lower, or about 550 times lower, or about 500 times lower, or about 450 times lower, or about 400 times lower, or about 350 times lower, or about 300 times lower, or about 250 times lower, or about 200 times lower, or about 150 times lower, or about 100 times lower, or about 50 times lower, than the C max and AUC for the approved dose of the oral extended release doxycycline (Oracea® 40 mg).
  • absorption of a 4% tetracycline antibiotic e.g., minocycline or doxycycline foam as determined by a PK Study is about 800 times to about 50 times lower than that of a comparable dose of an oral minocycline.
  • the 4% tetracycline antibiotic is a composition described herein.
  • the 4% tetracycline antibiotic is FMX-101, 4%, described herein.
  • a 4% tetracycline antibiotic foam described herein has about 800 times to about 25 times lower C max and/or AUC values as compared to the C max and/or AUC values of a comparable dose of an oral minocycline (e.g., an approved dose of SOLODYN® such as 1 mg/kg).
  • a comparable dose of an oral minocycline e.g., an approved dose of SOLODYN® such as 1 mg/kg.
  • it may be about 800 times lower, or about 750 times lower, or about 700 times lower, or about 650 times lower, or about 600 times lower, or about 550 times lower, or about 500 times lower, or about 450 times lower, or about 400 times lower, or about 350 times lower, or about 300 times lower, or about 250 times lower, or about 200 times lower, or about 150 times lower, or about 100 times lower, or about 50 times lower, or about 25 times lower, than the C max and AUC for the approved dose of the oral minocycline (SOLODYN® 1 mg/kg).
  • absorption of a 4% foam tetracycline antibiotic, e.g., minocycline or doxycycline foam as determined by a PK Study is about 850 times to about 50 times lower than that of the approved dose of an oral minocycline.
  • a 4% tetracycline antibiotic foam described herein has about 850 times to about 50 times lower C max and/or AUC values as compared to the C max and/or AUC values of the approved dose of an oral minocycline (e.g., Solodyn® 1 mg/kg).
  • a foam described herein e.g., a foam comprising 1-4% tetracycline antibiotic such as doxycycline or minocycline or combinations thereof, e.g., FMX-101, 4%) achieves good efficacy comparable to or better than an approved dose of an oral tetracycline (e.g., Oracea® 40 mg or Solodyn® 1 mg/kg) while avoiding systemic adverse events.
  • the foam exhibits fewer adverse events than a comparable dose of oral tetracycline.
  • the treatment of rosecea using a composition disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events or serious adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
  • the treatment of acne using a composition disclosed herein is superior to a comparable dose of an oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline (e.g., Oracea® 40 mg or Solodyn® 1 mg/kg).
  • the treatment of acne vulgaris using a composition disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
  • the treatment of rosecea or acne using FMX-101 or FMX-103, as disclosed herein is superior to a comparable dose of an oral tetracycline while exhibiting fewer adverse events or serious adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
  • the treatment of acne using FMX-101, 4% disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
  • the treatment of acne vulgaris using FMX-101, 4% disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
  • the gel, liquid gel, and foamable compositions disclosed herein meet a long-felt need for a shorter treatment regimen having an earlier onset and a higher percentage reduction in lesions, while maintaining high levels of safety and efficacy.
  • rosacea or acne including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein an enhanced safety and good tolerability of the topical foamable minocycline compositions is demonstrated.
  • the topical compositions provided herein avoid, reduce, minimize or do not cause adverse effects, which are attributed to oral tetracycline antibiotics.
  • Photosensitivity for example, is a known side effect of oral minocycline. It is manifested as an exaggerated sunburn reaction on areas of the body exposed to direct sunlight or ultraviolet light, resulting in muddy brown skin discoloration.
  • Use of oral minocycline over an extended period of time can also lead to skin pigmentation, e.g., manifested as blue-gray skin and blue-gray staining in areas of scarring and inflammation associated with rosacea. Tooth staining potential of oral minocycline in adult populations has also been acknowledged in recent literature. In contrast, no tooth staining was reported during the period of topical application of 1% or 4% minocycline foam or on follow-up to the study.
  • the topical minocycline composition avoids tooth staining.
  • Topical delivery also means that lower doses can be used again, contributing to the elimination or reduction of unwanted side effects.
  • the foamable compositions provided herein can be beneficial for the treatment of a range of skin conditions, including rosacea, wounds, burns, inflammation, superficial infections, antibiotic responsive diseases or dermatoses, skin diseases caused by bacteria, and other skin infections, such as impetigo.
  • the foamable compositions provided herein can be beneficial in mucosal infections and in eye infections and inflammatory conditions.
  • compositions provided herein can have protective properties in the case of UVB-induced sun damage or any other condition associated with sunlight or other light (e.g., laser) exposure.
  • the formulations and methods of treatment provided herein can potentially reduce skin photo damage and photo aging, and more generally reduce oxidative stress and inflammation in skin pathologies which are known to be accompanied by apoptotic cell death.
  • the absolute mean lesion count change for the 1.5% and 3% minocycline compositions is about the same.
  • the percent reduction of lesion count for the 1.5% and 3% minocycline compositions is about the same.
  • the reduction of IGA score for the 1.5% and 3% minocycline compositions is about the same.
  • topically administering a foam formulation having minocycline at 1.5% or 3% significantly decreases the number of lesions (absolute lesion count and percent change lesion count), and also significantly improves investigator's global assessment (IGA) results (reducing the IGA score by 2 grades and reaching a “clear or “almost clear” rating) in comparison to the vehicle. Further, the difference between the 1.5% and 3% formulations, with respect to decrease in the number of lesions and improvement of IGA score, is not statistically significant.
  • rosacea is a syndrome of undetermined etiology characterized by both vascular and papulopustular components, i.e., it is a chronic inflammatory condition of facial skin affecting both the blood vessels and pilosebaceous unit.
  • the observed dose independence of effectiveness in treatment of rosacea is surprising and unexpected in light of dose dependency observed with acne, where 4% minocycline is more effective than 1% minocycline.
  • the effectiveness in the treatment of rosacea is also surprising in view of the lack of bacterial involvement in rosacea, as is the case of acne and impetigo.
  • a topically administered foam formulation containing minocycline at 1.5% or 3% is safe and well tolerated. No drug related serious adverse events or systemic adverse events were reported in a clinical study of the formulations. There were only a few treatment-related dermal reactions reported (none in the 1.5% group, three patients in the 3% group and four patients in the vehicle group). These reactions resolved before the end of the study. A total of four subjects discontinued the study due to an adverse event (three patients in the 3% group and one in the vehicle group).
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline antibiotic is present in the gel or foam composition in an amount effective to treat rosacea in a subject, which is safe and well-tolerated.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein substantially no treatment-related dermal reactions are observed.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein no systemic drug-related side effects and no serious adverse reactions are observed.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline antibiotic is present in the gel or foam composition at a concentration of 1.5% or 3% to treat rosacea.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline is minocycline hydrochloride.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic wherein the 1.5% and 3% concentrations are equally effective in reducing the number of papules and pustules, as compared to the placebo vehicle.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 1.5% dose is more effective the 3% dose in reducing the number of papules and pustules, as compared to the placebo vehicle.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 3% dose is more effective the 1.5% dose in reducing the number of papules and pustules, as compared to the placebo vehicle.
  • the reduction in the papules and pustules is statistically significant as compared to placebo.
  • the reduction in the papules and pustules is statistically significant as compared to placebo.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline is minocycline hydrochloride.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic wherein the 1.5% and 3% concentrations are equally effective in reducing IGA score by two levels, as compared to the placebo vehicle.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 1.5% dose is more effective that the 3% dose in reducing the IGA score by two levels, as compared to the placebo vehicle.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 3% dose is more effective the 1.5% dose in reducing the IGA score by two levels, as compared to the placebo vehicle.
  • the reduction in IGA score by two levels is statistically significant as compared to placebo. In one or more embodiments the reduction in IGA score by two levels results in clear or almost clear compared to baseline.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein said tetracycline is minocycline hydrochloride.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein said tetracycline antibiotic is present in said gel or foam composition in an amount effective to treat moderate-to-severe papulopustular rosacea (IGA score 3-4).
  • IGA score 3-4 moderate-to-severe papulopustular rosacea
  • more than half of the tetracycline-treated subjects have severe rosacea at baseline.
  • Erythema is redness of the skin or mucous membranes, caused by hyperemia (increased blood flow) in superficial capillaries. It occurs with any skin injury. There are different types of erythema for example erythema nodosum and erythema multiforme. Visible redness of the skin is observed in patients with medium and severe rosacea.
  • a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises a tetracycline antibiotic, for example, minocycline or doxycycline, at the concentration of, for example, about 1.5% to 3%.
  • the redness is moderate redness.
  • the redness is severe redness.
  • the redness is a symptom of Rosacea.
  • it is a symptom of an infection.
  • it is a symptom of a bacterial infection.
  • a symptom of a fungal infection In some embodiments, it is a symptom of a viral infection. In some embodiments, it is a symptom of an allergic reaction.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic wherein the 1.5% and 3% concentrations are equally effective in reducing the severity of erythema, as compared to the placebo vehicle.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 1.5% dose is more effective than the 3% dose in reducing in reducing the severity of erythema, as compared to the placebo vehicle.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 3% dose is more effective than the 1.5% dose in reducing the severity of erythema, as compared to the placebo vehicle.
  • the reduction of erythema severity is statistically significant as compared to placebo.
  • a foam composition described herein is sufficient to reduce the severity of skin redness or erythema by at least 30%, 35%, 40%, 45%, 50%, 55%, 60%, 65%, 70%, 75%, 80%, or more as compared to the severity of skin redness or erythema before the treatment and/or as compared to a vehicle or oral doxycycline treatment.
  • a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline is minocycline hydrochloride.
  • a method for treating rosacea including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein essentially no skin irritation such as telangiectasia, burning/stinging, or flushing/blushing, or essentially no adverse events, or no serious adverse events are observed.
  • good tolerability was demonstrated with relatively few reports of skin irritation, such as telangiectasis, burning or stinging, flushing or blushing.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein an enhanced efficacy of the topical foamable minocycline compositions is demonstrated.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein better efficacy of the topical foamable minocycline compositions is demonstrated as compared to other topical treatments.
  • Oral doxycycline administration may cause common side effects, including upset stomach, nausea, diarrhea and mild headache.
  • doxycycline hyclate is a larger molecule compared to minocycline HCl, in some embodiments it can have a reduced penetration and hence the maximum plasma concentrations can be less than those obtained for minocycline HCl.
  • doxycycline hyclate penetrates better than minocycline HCl and hence the maximum plasma concentrations can be more than those obtained for minocycline HCl.
  • doxycycline hyclate penetration is similar to that of minocycline HCl and hence the maximum plasma concentrations can be similar to those obtained for minocycline HCl.
  • an effective method for treating rosacea as set out herein, to patients with more than twenty inflammatory lesions on the face (papules and/or pustules) and up to 2 nodules, with more than twelve but not more than a nineteen inflammatory lesions on the face and no nodules, and receiving a score of at least Moderate on the Investigator's Global Assessment Scale.
  • provided herein is an effective method for treating acne using a composition described herein. In one or more embodiments, provided herein is an effective method for treating acne vulgaris using a composition described herein. In some embodiments, the composition is FMX-101. In some embodiments, the composition is FMX-101, 4%.
  • the methods for treating rosacea are able to deliver effective amounts of a tetracycline antibiotic into the skin or mucosal surface.
  • the methods for treating rosacea are able to deliver effective amounts of a tetracycline antibiotic into and around the hair follicle or the hair follicle area.
  • the methods for treating rosacea are able to deliver effective amounts of a tetracycline antibiotic into or around the sebaceous gland or the sebaceous gland area or the pilosebaceous unit.
  • the methods for treating rosacea are able to deliver effective amounts of a minocycline, wherein the minocycline composition targets the sebaceous gland or the sebaceous gland area or the pilosebaceous unit.
  • a method for treating rosacea as set out herein, wherein the hydrophobic gel or foam composition targets the hair follicle or the hair follicle area.
  • a method for treating rosacea including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein a reduction in the number of lesions is observed after twelve weeks or less than twelve weeks of treatment compared to baseline.
  • a method for treating rosacea including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein an improvement in the skin condition is observed after twelve weeks or less than twelve weeks of treatment and wherein an improvement is considered as restoration of visible, normal cutaneous topographic features, indicating the return of skin integrity.
  • the improvement is after two weeks after three weeks, or after four weeks, or after five weeks, or after six weeks or after seven weeks, or after eight weeks, or after nine weeks, or after ten weeks, or after eleven weeks, or after twelve weeks.
  • a hydrophobic gel or foam composition comprising a therapeutically effective amount of tetracycline antibiotic for use in treating rosacea in a human subject comprising topically administering the composition at least alternate days or at least once daily, wherein a decrease in the number of rosacea papule and pustules is observed after at least twelve weeks of treatment.
  • the decrease in the number of rosacea papule and pustules is after two weeks, after three weeks, or after four weeks, or after five weeks, or after six weeks or after seven weeks, or after eight weeks, or after nine weeks, or after ten weeks, or after eleven weeks, or after twelve weeks.
  • a hydrophobic gel or foam composition comprising a therapeutically effective amount of tetracycline antibiotic for use in treating rosacea in a human subject comprising topically administering the composition at least alternate days or at least once daily, wherein a decrease the total number of rosacea lesions is observed after at least three weeks of treatment or after at least two weeks of treatment.
  • a hydrophobic gel or foam composition comprising a therapeutically effective amount of tetracycline antibiotic for use in treating rosacea in a human subject comprising topically administering the composition at least alternate days or at least once daily, wherein a decrease the number of inflammatory rosacea lesions is observed after at least three weeks of treatment or after at least two weeks of treatment.
  • the human subject is 60 or less than 60 years old, is 50 or less than 50 years old, is 40 or less than 40 years old, is 30 or less than 30 years old, or is 25 or less than 25 years old, or is 22 or is less than 22 years old, or is 20 or less than 20 years old, or is 18 or less than 18 years old, or 15 or is less than 15 years old, or is between 8 to 25 years old or is between 9 to 22 years old.
  • the subject is a female.
  • the female is under the age of forty-six and optionally is a pregnant or breastfeeding female.
  • the subject is a male.
  • the subject is a teenager.
  • the subject is a child.
  • a method for treating rosacea including administering topically to a surface having rosacea a composition comprising a tetracycline antibiotic, wherein after twelve weeks of treatment, at least about 40% of the treated rosacea lesions disappear (in other words, a 40% decrease in the number of lesions) so that no further antimicrobial therapy is necessary. In some embodiments, at least about 50%, at least about 60%, at least about 70% or at least about 80% of the treated rosacea lesions disappear. In one or more embodiments, at least about 90% of the treated rosacea lesions disappear.
  • a decrease of at least about 60% in the number of rosacea lesions is observed after twelve weeks or less than twelve weeks of treatment.
  • a method for treating rosacea including administering topically to a surface having rosacea a composition comprising a tetracycline antibiotic, wherein after twelve weeks or less than twelve weeks of treatment, at least about 45% of the treated rosacea lesions disappear (in other words, a 45% decrease in the number of lesions) so that no further antimicrobial therapy is necessary.
  • at least about 50%, at least about 60%, at least about 70% or at least about 80% of the treated rosacea lesions disappear after six week or less than six weeks of treatment.
  • at least about 90% of the treated rosacea lesions disappear after twelve week or less than twelve weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared is at least about 30%, at least about 40%, or at least about 50% or at least about 60%, or at least about 70% or at least about 75% or at least about 80% after twelve weeks or less than twelve weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared is at least about 50%, or at least about 60%, or at least about 70%, or at least about 80% after four weeks after the end of the treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared at the end of treatment is statistically significant compared to baseline in both 1.5% and 3% dose groups.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared at the end of treatment compared to baseline is statistically significant in both 1.5% and 3% dose groups when compared to placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared at the end of treatment compared to baseline is statistically significant in the 3% dose group when compared to placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the baseline severity of rosacea is at least moderate to severe, as judged by the number of rosaceas and investigator's global severity assessment (IGA).
  • IGA investigator's global severity assessment
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the mean number of rosacea papule and pustules at baseline is at least about 30-34 or at least about 34-35.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the number of papule and pustules is at least 20 papule and pustules. In other embodiments there is at least one papule and pustules, or at least 5, or at least 10 or at least 15 papule and pustules and in further embodiments there are at least 25, or at least 30 or at least 40 or at least 50 papule and pustules.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the rosacea is low to moderate rosacea.
  • the composition can be applied as aforesaid as a method of protecting the skin, for example, by preventing microbial infection or rosacea
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the IGA score as assessed by the investigator at baseline is between 3-4, indicating moderate to severe rosacea at baseline.
  • the composition can be applied to mild rosacea and in still further embodiments it can be applied to very severe rosacea.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the daily application of topical minocycline foam (3% and 1.5%) on facial skin with moderate to severe rosacea results in a significant improvement of the disease, for example, as indicated by the primary and secondary endpoints.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein there is a clinically and statistically significant reduction in a lesion count, after twelve weeks of treatment in the subjects receiving minocycline foam compared to Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a clinically and statistically significant improvement in the investigator global assessment of rosacea severity is observed after 12 treatment weeks in the subjects receiving minocycline foam compared to Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a clinically and statistically significant improvement in the investigator global assessment of rosacea severity is observed after 12 treatment weeks in the subjects receiving minocycline foam compared to Placebo, and wherein a clinically significant improvement in the investigator global assessment of rosacea severity comprises improvement by at least two levels.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect of the minocycline foam is dose dependent, and the effect of 3% minocycline foam is generally greater than 1.5% minocycline foam.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect of the minocycline foam is dose dependent, and the effect 1.5% minocycline foam is generally greater than 3% minocycline foam.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect of the minocycline foam on rosacea is dose independent (in a surprising and unexpected contrast to dose dependency observed with acne), and the effect of 1.5% minocycline foam is similar to 3% minocycline foam.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, a clinically and statistically significant reduction in the number of inflammatory lesions can be seen after 12 weeks of treatment in subjects receiving the 1.5-3%, or about 1.5% or about 3% minocycline foam, as compared to Placebo and/or compared to baseline prior to treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, more than a 60% reduction in inflammatory lesion counts can be seen following twelve weeks of treatment in subjects receiving the 1.5-3% minocycline foam compared to Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, the percent of subjects who had a decrease of more than 40%, 50%, 60%, or 70% in the inflammatory lesions count was statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 6 treatment weeks and onward.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, the percent of subjects who had a decrease of more than 50% or 60%, in the inflammatory lesions count was statistically significantly higher in the 1.5-3% treatment group compared to Placebo only at twelve treatment weeks.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment at 12 weeks, more than 20% of the subjects have “clear” or “almost clear” skin in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 50% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 60% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 70% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 50% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 60% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment at 12 weeks, the number of the subjects having improvement is statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 8 treatment weeks and onward.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment at 12 weeks, the number of the subjects having improvement by of at least 2 grades is statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 12 treatment weeks and onward.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein improvement of at least 2 grades in the investigator's global assessment score is observed in at least 20% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein improvement of at least 2 grades in the investigator's global assessment score is in at least 15% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein improvement of at least 3 grades in the investigator's global assessment score is in at least 10% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to secondary endpoint relating to rosacea improvement, assessment by the investigator after twelve weeks of treatment indicates improvement in at least 70% of subjects receiving the 1.5-3% minocycline foam, wherein this is statistically significant compared to the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to secondary endpoint relating to rosacea improvement assessment by the investigator after 12 treatment weeks indicates improvement in at least 60% of subjects in subjects receiving the 1.5-3% minocycline foam and wherein this is statistically significant compared to the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein at least half the subjects receiving the 1.5-3% minocycline foam evaluated their rosacea as ‘much better than prior to study’ and wherein this is statistically significant when compared to the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect was most notably shown on severe rosacea subjects receiving the 1.5-3% minocycline foam.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions and that disappeared at the end of treatment compared to baseline is higher than placebo in both 1.5% and 3% dose groups.
  • the placebo formulation has a beneficial effect.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a placebo composition being a vehicle composition described herein for the delivery of a tetracycline that does not comprise a tetracycline antibiotic, wherein a percent of number of inflammatory lesions that disappeared at the end of treatment compared to baseline is higher than on a surface having rosacea that is untreated.
  • placebo is statistically better than no treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 3% dose group at the end of treatment is significantly statistically higher than that of the 1.5% dose group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 1.5% dose group at the end of treatment is significantly statistically higher than that of the 3% dose group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 3% dose group at the end of treatment is significantly statistically higher than that of placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 1.5% dose group at the end of treatment is significantly statistically higher than that of placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in both 1.5% and 3% dose groups at the end of treatment is statistically significant when compared to placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein at least about 30%, or at least about 40%, or at least about 50%, or at least about 55%, or at least about 58%, or at least about 60%, or at least about 62%, or at least about 70%, or at least about 75% of total number of inflammatory lesions disappear after twelve weeks after the end of the treatment (F/U).
  • these changes at F/U are statistically significant compared to baseline in both 1.5% and 3% dose groups.
  • these changes at F/U are statistically significant compared to placebo in both 1.5% and 3% dose groups.
  • the number of inflammatory lesions at F/U is the same or similar compared to end of treatment (“EOT”) in both 1.5% and 3% dose groups. In one or more embodiments the number of inflammatory lesions at F/U increases compared to EOT. In one or more embodiments there is the number of inflammatory lesions at F/U decreases compared to EOT.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, more than 15% of the subjects have “clear” or “almost clear” skin in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, more than 10% of the subjects have “clear” or “almost clear” skin in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 70% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 50% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 70% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 80% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having improvement by of at least 2 grades is statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 12 treatment weeks and onward.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having improvement by of at least 2 grades is in at least 10% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having improvement by of at least 2 grades is in at least 15% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in no adverse event.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein at treating said rosacea in said subject results in more than about 30% reduction in lesions, relative to placebo, after about two to twelve weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results about 30-60% reduction in lesions, relative to placebo, after about two to twelve weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea, in said subject, with said composition having 1.5% or 3% minocycline, results in about 33% reduction in the incidence of erythema, relative to 7% reduction in placebo, after two weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea, in said subject, with said composition having 1.5% or 3% minocycline, results in a significant reduction in papules and pustules, relative to placebo, after about two to twelve weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in reduction in the number of lesions ranging from about 10 to about 30, relative to a baseline.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in reduction in the number of lesions of about 10, 15, 20, or 30, relative to a baseline.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea, in said subject, with said composition having 1.5% or 3% minocycline, results reduction in the number of lesions of about 19-22, relative to placebo, after about two to twelve weeks of treatment.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in lesion count ranging from about 10 to about 20.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in lesion count of about 10, 13, 14, 15, 18, or 20.
  • patient compliance is essential in the effectiveness of prescribed antibiotics. With poor compliance, therapeutic goals are less likely to be achieved, resulting in poorer patient outcomes. Poor compliance is associated with deteriorating skin condition, the need for additional consultations, the emergence of bacterial resistance, extra drugs, additional expenses on cosmeticians and increases in direct and indirect costs of healthcare management.
  • Topical agents can also be more attractive than oral therapy because they reduce the potential for systemic side effects, typically nausea and diarrhea, which are commonly associated with many systemic antibiotics. They can also help provide a reduction in cross contamination by providing a barrier with antibiotic over the infected area.
  • a method for treating rosacea including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic administered at least alternate days or once daily which has a high or improved patient compliance compared with existing treatments.
  • one or more of the methods provided herein for treating or alleviating rosacea or acne can also be used for treating a disorder including one or more of the following: rosacea related or associated disorder, rosacea-like symptoms, rosacea related symptoms, a tetracycline antibiotic responsive rosacea related disorder, skin disorder caused by a bacteria, and a tetracycline antibiotic responsive sebaceous gland disease.
  • Example 3 A multi-center, randomized, double blind, placebo controlled, parallel group, dose finding Phase II clinical study conducted in patients afflicted with papulopustular rosacea is reported in Example 3 below.
  • the study is designed to assess the efficacy, safety and tolerability of foamable composition comprising minocycline at one of two different concentrations (strengths): a lower concentration of minocycline of 1.5% by weight of the formulation and higher concentration of minocycline 3% by weight of the formulation, in comparison with a placebo.
  • concentrations of minocycline in the composition were selected according to formulation integrity and stability considerations.
  • Phase II clinical studies for additional tetracycline antibiotic formulations such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 are undertaken.
  • Phase II studies in rosacea for other tetracycline antibiotic formulations (such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058) provide similar results to those seen for the FMX103 formulation.
  • a Phase II clinical study indicates that other tetracycline antibiotic formulations (such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058) can treat moderate-to-severe rosacea.
  • other tetracycline antibiotic formulations such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058
  • a Phase II clinical study for another tetracycline antibiotic formulation such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 indicates that such a formulation can reduce papules and pustules in rosacea patients.
  • DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 can help patients having rosacea.
  • DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 are safe and well tolerated in subjects who have rosacea. In some embodiments there are no drug-related systemic side effects.
  • DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 are in some embodiments superior to a vehicle in preventing rosacea.
  • compliance with DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 is high.
  • application with one or more of topical DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 can improve patients' quality of life
  • other tetracycline antibiotic formulations such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058) are safe and well-tolerated in the subjects having rosacea. In some embodiments no systemic drug-related adverse events are recorded.
  • compositions and methods provided herein are described with reference to the following examples, in a non-limiting manner.
  • the following examples exemplify the foamable compositions and methods described herein.
  • the examples are for the purposes of illustration only and are not intended to be limiting. Many variations will suggest themselves and are within the full intended scope.
  • the amounts in the examples should be read with the prefix “about.”
  • NM means not measured.
  • Exemplary Ingredients Suitable for the Production of Foamable Compositions Chemical Name Function Commercial Name Supplier Beeswax white Foam Beeswax white STRAHL & PITSCH, Inc. Stabilizer Behenyl alcohol Foam Lanette 22 BASF Stabilizer Cetostearyl alcohol Foam Kolliwax ® CSA 50 BASF Stabilizer Coconut oil Carrier Coconut oil Henry Lamotte Cyclomethicone-5 Carrier ST-cyclomethicone-5 Dow Hydrogenated castor oil Foam Kolliwax ® HCO BASF Stabilizer Light Mineral Oil Carrier Pionier 2076P Hansen & Rosenthal Light Mineral Oil 15 Columbia Petro Chem PVT.LTD.
  • Minocycline HCl Active agent Minocycline HCl Hovione Myristyl alcohol Foam Kolliwax ® MA BASF Stabilizer Propane/Isobutane/Butane Propellant AP-70 Aeropress (55:18:27) Soybean oil Carrier Soybean oil Henry Lamotte Stearic acid Foam Kolliwax ® S Fine BASF Stabilizer Stearyl Alcohol Foam Kolliwax ® SA BASF Stabilizer
  • Step 1 Hydrophobic solvents such as mineral oils are mixed at room temperature. Others solvents such as silicones, if present, are added at room temperature under mixing until formulation homogeneity is obtained.
  • Step 2 The formulation is warmed to 70-80° C. or 80-90° C. and solid compounds such as fatty alcohols, fatty acids and waxes are added and mixed until complete dissolution.
  • Step 3 The formulation is cooled down to 30-40° C. Silica dioxide (SiO 2 ), if present, and active agents such as tetracyclines are added under mixing until formulation homogeneity is obtained.
  • Silica dioxide SiO 2
  • active agents such as tetracyclines
  • Step 4 For gel compositions, the formulation is packaged in suitable containers.
  • the formulation is packaged in aerosol canisters which are crimped with a valve, pressurized with propellant and equipped with an actuator suitable for foam dispensing.
  • a metered dosage unit can is utilized to achieve delivery of desirable and/or repeatable measured doses of foam.
  • Step 5 For foamable compositions, pressurizing is carried out using a hydrocarbon gas or gas mixture. Canisters are filled and then warmed for 30 seconds in a warm bath at 50° C. and well shaken immediately thereafter.
  • Step 6 The canisters or containers are labeled.
  • Step 1 Hydrophobic solvents and solid compounds such as fatty alcohols, fatty acids and waxes are mixed and heated to a temperature sufficient to achieve complete dissolution.
  • Step 2 The formulation is cooled down to 35-40° C., sensitive components such as silica dioxide (SiO 2 ), if present, cyclomethicone and sensitive active agents such as tetracyclines are added under mixing until formulation homogeneity is obtained.
  • sensitive components such as silica dioxide (SiO 2 ), if present, cyclomethicone and sensitive active agents such as tetracyclines are added under mixing until formulation homogeneity is obtained.
  • Step 3 The formulation is cooled down to room temperature.
  • Step 4 For gel compositions, the formulation is packaged in suitable containers.
  • the formulation is packaged in aerosol canisters which are crimped with a valve, pressurized with propellant and equipped with an actuator suitable for foam dispensing.
  • Step 5 For foamable compositions, pressurizing is carried out using a hydrocarbon gas or gas mixture.
  • the canisters or containers are labeled.
  • part of the hydrophobic solvents are added during the cooling process of the formulation (step 2).
  • one of more of the formulation mixing steps can be done with or without vacuum and in the presence or absence of air, or an inert gas.
  • one or more steps are done under vacuum, in the absence of air under an inert gas.
  • likewise packaging in canisters can be done with or without vacuum and in the presence or absence of air, or an inert gas.
  • STUDY TITLE A Randomized, Multicenter, Double-blind, Vehicle-controlled Study to Evaluate the Safety and Efficacy of two Different Doses of a Topical Minocycline Foam Compared to Vehicle in the Treatment of Papulopustular Rosacea.
  • STUDY SYNOPSIS In this example, topical administration of tetracycline (for example minocycline) is studied and the safety and efficacy of two different doses of minocycline foam compared to vehicle foam are evaluated in the treatment of moderate-to-severe papulopustular rosacea.
  • tetracycline for example minocycline
  • the primary objective of the study is to evaluate the efficacy of two different doses of FMX-103 minocycline foam compared to vehicle foam in subjects with moderate-to-severe papulopustular rosacea.
  • the secondary objectives of the study are (a) to determine the relationship between the concentration(s) of topical minocycline foam and treatment response, (b) sensitivity analyses of efficacy of two different doses of FMX-103 minocycline foam compared to vehicle foam in subjects with moderate-to-severe papulopustular rosacea, and (c) to evaluate the safety and tolerability of topical minocycline foam applied daily for 12 weeks.
  • Daily dose Once daily application of a small amount of study drug (a diameter of a one cent coin/ ⁇ 1.5 cm) onto fingertip to cover the entire face.
  • Dispensing 1 canister containing 35 g of the FMX-103 minocycline formulation, 1.5% or 3% or vehicle dispensed at Visit 2 (Baseline), Visit 4, Visit 5, and optionally at other visits if required.
  • PATIENTS The study enrolls 210 male or female patients (approximately 70 subjects per arm: control, 1.5% and 3% minocycline) at approximately 14-16 sites in Germany who meet all of the inclusion criteria (Table 1) and none of the exclusion criteria (Table 2).
  • Rosacea conglobata or fulminans corticosteroid-induced rosacea or isolated pustulosis of the chin, facial erythrosis of known origin other than rosacea (e.g., known carcinoid syndrome).
  • Ocular rosacea e.g., conjunctivitis, blepharitis, or keratitis
  • Women of childbearing potential who has used a highly effective method of contraception for less than 3 months prior to baseline.
  • Eligible subjects are assigned to 1 of 3 treatments (vehicle, 1.5% and 3% minocycline) at 1:1:1 ratio according to the randomization schedule. Subjects are to apply the study drug topically once daily for 12 weeks as directed. Subjects are advised to use the study drug at approximately the same times each day in the evening. Both the investigator and subject are blinded to the study drug identity.
  • the dosing regimen is the same for all treatment groups. All patients receive at Screening Visit a guideline with detailed instructions on how to apply the medication correctly. In addition, patients are asked at each study visit about their medication application to assure a correct use of study medication.
  • Study drug kits are dispensed at Visit 2 (Baseline), Visit 4 (Week 4), Visit 5 (Week 8), and optionally at other/unscheduled visits if required for continuous dosing.
  • a small amount of study drug (a diameter of a one-cent coin) should be expressed from the canister onto the thoroughly washed finger tips and then applied topically as a thin layer over all parts of the face.
  • Blood results must not show clinically significant abnormalities. b If a subject prematurely withdraws from the study, all evaluations described under Visit 6/Week 12 must be performed. c Height to be measured only at Baseline. d Measure blood pressure and heart rate after the subject has been sitting for at least 5 minutes at rest. e The canister of study drug has to be weighed and given back to the patient. f If patient is unable to come to the visit there should be at least a follow-up phone call.
  • the efficacy assessments include the lesion counts and IGA at Baseline and Weeks 2, 4, 8, and 12.
  • the primary efficacy endpoint is the absolute change in inflammatory lesion count at Week 12 compared to Baseline. Lesion count is performed by the investigator. The number of papules, pustules and nodules are counted and the numbers recorded. The facial area lesion counts are made for the forehead, left and right cheeks, nose and chin at each visit.
  • Patient demographics can include the individuals with diverse group, gender, height, weight and body mass index (BMI).
  • BMI body mass index
  • Descriptive statistics for qualitative variables include the number and percentage of subjects with the qualitative response.
  • the Intent-to-treat (ITT) analysis population includes all randomized subjects.
  • the ITT population is primary for all efficacy analyses.
  • the Per-protocol (PP) population includes all subjects in the ITT population who had at least one post-Baseline assessment, and are without any other major deviations from the protocol that can have an impact on the efficacy assessments and subjects are analyzed as treated.
  • the PP population is secondary for all efficacy analyses.
  • the Safety population includes all randomized subjects who received at least one application of study medication. Subjects who have no post-Baseline assessments are included in the Safety population unless all dispensed study drug is returned. All safety analyses are performed on the Safety population.
  • the primary efficacy endpoint is the absolute change in inflammatory lesion count at Week 12 compared to Baseline.
  • the secondary efficacy endpoints are, hierarchically: the dichotomized IGA score where success is defined as a two-step drop in score at Week 12 compared to Baseline; the dichotomized IGA score where success is defined as a two-step drop resulting in a 0 or 1 score at Week 12 compared to Baseline; percent change in inflammatory lesion count at Week 12 compared to Baseline; the dichotomized mIGA score where success is defined as a two-step drop resulting in a 0 or 1 score at Week 12 compared to Baseline.
  • the safety assessments in this study are standard safety measures in clinical studies, including physical examinations, vital signs (blood pressure, heart rate), local safety assessment scores (telangiectasis, burning/stinging, and flushing/blushing), questioning on Adverse events (AEs) and serious AEs (SAES) (volunteered, observed, and elicited by general questioning), and clinical laboratory test results (serum chemistry, hematology, urinalysis).
  • the severity of each of the following signs/symptoms is measured by an investigator at Baseline and at Weeks 2, 4, 8 and 12: telangiectasis, burning/stinging, and flushing/blushing, all scored on a 1-5 scale.
  • the score for signs is determined by the investigator and must represent the subject's condition at the time of the evaluation.
  • the score for symptoms, burning/stinging and flushing/blushing should be scored based on the subject's symptoms reported for the previous three days.
  • a complete relevant medical and surgical history is obtained at Screening Visit, which will include diseases of the head, ears, eyes, nose and throat, respiratory diseases, cardiovascular diseases, gastrointestinal diseases, hepatic diseases, genitourinary diseases, musculoskeletal diseases, endocrine diseases, neurological diseases, psychiatric diseases, skin diseases, allergies, hematological diseases, and other abnormalities.
  • Other safety evaluation points will include a history of medication usage (including previous use of acne medications and non-medication therapies) and all medication that the subject is currently taking or any change in medication or dosage since the last visit are documented throughout the study.
  • AEs adverse events reported spontaneously by the subject or observed by the investigator.
  • An Adverse Event is any unfavorable or unintended sign, symptom, or disease that appears or worsens in a subject after the subject signs the ICF (and/or Assent Form) for a clinical study. AEs are recorded at each visit throughout the study on the appropriate CRF.
  • tetracycline formulations described herein such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058.
  • the amount of light mineral oil in the formulation is adjusted based on the amount of minocycline hydrochloride. For example, if the potency of minocycline is 100%, then the amount of minocycline hydrochloride is 3% and amount of the mineral oil is 2.8% or then the amount of minocycline hydrochloride is 1.5% and amount of the mineral oil is 4.3%.
  • c AP-70 (CAS # 6847-86-8) is a mixture of about 27% w/w butane, 18% w/w isobutane and 55% w/w propane.
  • the amount of light mineral oil in the formulation is adjusted based on the amount of minocycline hydrochloride. For example if the potency of minocycline is 100%, then the amount of minocycline hydrochloride is 4% and amount of the mineral oil is 1.8% or then the amount of minocycline hydrochloride is 1% and amount of the mineral oil is 4.8%.
  • C AP-70 (CAS # 6847-86-8) is a mixture of about 27% w/w butane, 18% w/w isobutene and 55% w/w propane.
  • the amount of light mineral oil in the formulation is adjusted based on the amount of doxycycline hyclate. For example if the potency of doxycycline is 100%, then the amount of doxycycline hyclate is 4% and amount of the mineral oil is 1.8%.
  • C AP-70 (CAS # 6847-86-8) is a mixture of about 27% w/w butane, 18% w/w isobutene and 55% w/w propane.
  • pressurized glass bottles enables the inspection of formulations for homogeneity in the presence of propellant. Following 18 months of storage at 25° C. the formulation was found to be re-dispersible, i.e., homogeneous following slight shaking.
  • the tetracycline composition has a shelf life of at least 6 months, or at least 9 months, or at least 12 months, or at least 15 months, or at least 18 months, or at least 21 months, or at least 24 months at ambient temperature. In one or more embodiments, the tetracycline composition has a shelf life of at least 6 months, or at least 9 months, or at least 12 months, or at least 15 months, or at least 18 months, or at least 21 months, or at least 24 months at 25° C. In one or more embodiments, the tetracycline composition has a shelf life of at least 1 month, or at least 3 months, or at least 6 months, or at least 9 months, or at least 12 months at 40° C.
  • Foam quality Conformed to the foam quality specification following storage for 9 months at 40° C.
  • Odor Conformed to the specifications and showed no odor following storage at 40° C. for 9 months.
  • Density No significant change in density was found after storage at 40° C. for 9 months.
  • Collapse time At least 180 seconds.
  • compositions were performed according to the principles of current good manufacturing practice (c-GMP). Production conditions were aimed to ensure high quality of the product and to prevent any potential cross contamination.
  • the production site was certified by the Israel Ministry of Health as suitable for GMP production and supply of small clinical batches for Phase I and IIa clinical trials.
  • DOX-244- 1.0220 1.031 1.022 — — — — 1.010 1.031 111123 PF DOX-244- 1.0800 1.098 1.080 1.060 — 1.045 1.082 1.046 111123 PFF Doxycycline content (% w/w) Batch/Sample 6 M 9 M 12 M 18 M 24 M name 25° C. 40° C. 25° C. 25° C. 25° C. 25° C. 25° C. DOX-244- 1.017 1.025 1.053 0.967 0.994 1.021 111123 PF DOX-244- 1.046 1.028 1.091 1.044 1.018 1.051 111123 PFF
  • Collapse time At least 180 seconds.
  • compositions were performed according to the principles of current good manufacturing practice (c-GMP). Production conditions were aimed to ensure high quality of the product and to prevent any potential cross contamination.
  • the production site was certified by the Israel Ministry of Health as suitable for GMP production and supply of small clinical batches for Phase I and IIa clinical trials.
  • Collapse time At least 120 seconds.
  • compositions were performed according to the principles of current good manufacturing practice (c-GMP). Production conditions were aimed to ensure high quality of the product and to prevent any potential cross contamination.
  • the production site was certified by the Israel Ministry of Health as suitable for GMP production and supply of small clinical batches for Phase I and IIa clinical trials.
  • Adapalene content (% w/w) Batch/Sample T 0 1 M name 25° C./40° C. 60° C. 25° C. 40° C. 60° C.
  • DOD-003 0.2948 0.2948 0.3030 0.2950 0.3076
  • Adapalene content (% w/w) Batch/Sample T 0 1 M 2 M 3 M 4 M name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-037- 0.09 NM 0.10 NM 0.10 0.10 0.10 0.0967 0.10 160320
  • Adapalene content (% w/w) Batch/Sample T 0 1 M 2 M 3 M name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-045- 0.10 NM 0.10 NM 0.10 0.09 0.10 160306
  • Adapalene content (% w/w) T 0 1M 2M 3M Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-052-160410 0.29 0.29 0.29 0.30 0.30 0.30 0.29 0.29
  • Minocycline % content in MCD-053-160413 following storage for 3 months at 25° C. and 40° C.
  • Minocycline content (% w/w) T 0 1M 2M 3M Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-053-160413 3.91 3.95 3.91 3.84 3.88 3.97 3.94
  • Adapalene % content in MCD-053-160413 following storage for 3 months at 25° C. and 40° C.
  • Adapalene content (% w/w) T 0 1M 2M 3M Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-053-160413 0.28 0.28 0.28 0.28 0.29 0.28
  • Minocycline % content in MCD-058-160414 following storage for 3 months at 25° C. and 40° C.
  • Minocycline content (% w/w) T 0 1M 2M 3M Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-058-160414 4.06 3.90 3.97 3.92 4.01 3.91 3.90
  • Adapalene % content in MCD-058-160414 following storage for 3 months at2 5° C. and 40° C.
  • Adapalene content (% w/w) T 0 1M 2M 3M Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. MCD-058-160414 0.29 0.27 0.28 0.28 0.29 0.29 0.29 0.29 0.29
  • tetracycline for example minocycline
  • STUDY TITLE An Open-label, Multiple Dose Study to Assess the Pharmacokinetic Profile of Minocycline from FMX-101 Foam (4%) in Male and Female Volunteers.
  • OBJECTIVES 1. To assess bioavailability of minocycline from FMX-101 minocycline HCl foam, 4%. 2. To characterize the pharmacokinetic profile of minocycline following multiple-dose topical administration of FMX-101 (4%) in healthy volunteers with or without acne.
  • FMX-101 minocycline (4%) approximately 4 gr per application.
  • the composition of FMX-101 Foam (4%) is described in Table 5B above.
  • PK of minocycline was derived from plasma concentration versus time data. For purposes of calculating PK parameters, concentrations ⁇ LLQ were treated as zero. For purposes of tabular presentation and graphing mean profiles, concentration values ⁇ LLQ were treated as missing.
  • AUCT The area under the plasma concentration versus time curve in ng*mL/h.
  • the AUC from time zero to the last experimental time point (t*) with a detectable drug concentration equal to or greater than the limit of quantification value was designated AUCT and calculated by the linear trapezoidal rule (dosing days 1 and 16).
  • FIG. 2 depicts the mean minocycline plasma concentrations from Day 1 to Day 16 for subjects who received FMX-101.
  • PK studies for additional tetracycline antibiotics such as doxycycline in one or more embodiments may be undertaken.
  • PK studies for doxycycline in formulations such as FDX104, DOX331, DOX332, DOD-003, and minocycline with adapalene MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058.
  • At least twelve subjects are enrolled to receive daily topical administration of tetracycline formulation, as indicated above.
  • Subjects are admitted to the Clinical Research Center (CRC) in the evening before the first study drug administration (Day 0), and remain in-house for 24 hours after first dosing (Day 1).
  • CRC Clinical Research Center
  • blood samples (6 mL) for determination of minocycline blood concentrations is drawn as follows:
  • Blood samples are analyzed using a validated method with a lower limit of quantification (LLQ) of 1 ng/mL.
  • LLQ lower limit of quantification
  • MCH Minocycline hydrochloride
  • Hydrophilic solvents were tested for compatibility with MCH at a ratio of MCH:excipient of 1:250.
  • Dimethyl Isosorbide, Glycerin, Ethanol, Propylene glycol, Butylene Glycol, PEG 200, Hexylene Glycol, PEG 400, Dimethyl Sulfoxide and Diethylene glycol monoethyl ether were found to be incompatible with MCH.
  • Oily emollients and waxes were tested for compatibility with MCH at a ratio of MCH:excipient of 1:250 for oily emollients and 1:50 for waxes.
  • Sucrose stearic acid esters D1803, Sucrose stearic acid esters D1807 and Sucrose stearic acid esters D1811 were found to be compatible with MCH; however, not all of them dissolved in oil (e.g., 1811, 1813).
  • Foam adjuvants were tested for compatibility with MCH at a ratio of MCH:excipient of 1:50.
  • Isostearyl alcohol, Behenyl alcohol, Stearyl alcohol, Cetyl alcohol, Oleyl alcohol, Myristyl alcohol, Cetostearyl alcohol, Palmitic acid, Stearic acid and Oleic acid were found to be compatible with MCH.
  • Isostearic acid was not compatible with MCH.
  • Additives were tested for compatibility with MCH at a ratio of MCH:excipient of 1:50. Aerosil and Menthol were found to be compatible with MCH. Titanium dioxide and Ethocel were not compatible with MCH.
  • Additives were tested for compatibility with MCH. Minimal quantities of water (100 ⁇ L) were added to MCH, suspended in excipients that had demonstrated compatibility to examine whether water can enhance oxidation/degradation in the absence or presence of antioxidant. In parallel, antioxidants were added to the MCH suspensions comprising water. Antioxidants were also added to excipients which were found to be non-compatible with MCH. Addition of water caused prompt degradation of MCH. Addition of the antioxidants alpha-tocopherol, BHA/BHT and propyl gallate did not prevent MCH degradation. Compatible excipients became incompatible in the presence of water. Addition of antioxidants did not alter this result.
  • Doxycycline Hyclate is a broad-spectrum antibiotic synthetically derived from oxytetracycline.
  • Doxycycline hyclate is a yellow crystalline powder soluble in water and in solutions of alkali hydroxides and carbonates.
  • Doxycycline hyclate has a high degree of lipid solubility and a low affinity for calcium binding.
  • Doxycycline monohydrate is a broad-spectrum antibiotic synthetically derived from oxytetracycline.
  • the chemical designation of the light-yellow crystalline powder is alpha-6-deoxy-5-oxytetracycline.
  • Doxycycline is a member of the tetracycline antibiotics group and is commonly used to treat a variety of infections, particularly effective in treating acne condition.
  • Group II included Doxycycline Hyclate mixed with various vehicles with addition of antioxidants like alpha tocopherol, butylated hydroxytoluene (BHT), and ascorbic acid.
  • antioxidants like alpha tocopherol, butylated hydroxytoluene (BHT), and ascorbic acid.
  • Non Non Compat. Non Non Non Non Non Results no compat. compat. no compat. compat. compat. compat. compat. compat. after the oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation storage
  • Doxycycline Hyclate and Monohydrate unexpectedly revealed different compatibility with excipients.
  • Doxycycline Hyclate was stable in a mixture with PPG-15 Stearyl Ether.
  • the Doxycycline Monohydrate was found to be non-compatible with PPG-15 Stearyl Ether during the storage at 40° C. and 50° C. for two weeks.
  • Doxycycline Hyclate was stable in a mixture with ethanol 95% and hexylene glycol. Doxycycline Monohydrate oxidized in similar mixtures.
  • Doxycycline Hyclate revealed stability in Ethanol 95% following the storage at 40° C. and 50° C. for two weeks although both Minocycline HCl and Doxycycline Monohydrate changed their color from yellow to orange upon dissolution in Ethanol 95%.
  • a double-blind, randomized, placebo-controlled Phase 2 trial has been carried out involving 233 patients who were enrolled in 18 sites throughout Germany. Patients were randomized (1:1:1) to receive high dose FMX103 (3% minocycline foam), low dose FMX103 (1.5% minocycline foam) or vehicle foam once daily (in the evening) over 12 weeks, followed up by a 4-week post-treatment evaluation. However, one subject in the 3% group did not receive treatment and was not included in the intent to treat analysis.
  • the study medication, dosage, inclusion/exclusion criteria, and design generally followed those outlined in Example 3 above, with the inclusion criteria of healthy males or non-pregnant female aged over 18, having at least 12 papules and/or pustules for more than 6 months, and having the Investigator's Global Assessment (IGA) scores moderate to severe.
  • the mean age of the study participants was 52.5 and 63% of the participants were female (see Table 79A and B).
  • the efficacy endpoints were the absolute change in the number of inflammatory facial lesions (papules and pustules (primary endpoint)), improvement of the IGA of severity at 12 weeks compared to baseline (first secondary endpoint), and percent change in inflammatory lesion count at week 12 compared to baseline (second secondary endpoint).
  • IGA score improvement by 2 or more grades and reaching an IGA score of 0 (“clear”) or 1 (“almost clear”) were considered successful.
  • Safety and tolerability in the treatment of moderate to severe papulopustular rosacea were also evaluated.
  • Safety and efficacy evaluations were performed at week 2, 4, 8, and 12, with an additional safety follow-up visit at week 16.
  • Baseline inflammatory lesion count was 7, below inclusion criteria of 12. Subject was not dispensed study drug and was not included in the intent-to-treat population. Incomplete baseline assessment was done. b Percentages are based on the number of subjects randomized. c Includes all randomized subjects. d Includes all ITT subjects without any major deviations from the protocol. e Subjects may be excluded for more than one reason.
  • FIG. 1A its baseline was 21.1 for the 1.5% dose, 19.9 for the 3% dose, and 7.8 for vehicle ( FIG. 1A ; Table 81A).
  • the corresponding percent reductions were 61.4% and 55.5% for the FMX103 1.5% and 3% groups, respectively, and 29.7% for the vehicle (1.5% and 3%, both p ⁇ 0.001, ANCOVA, intent-to-treat analysis).
  • FIG. 1B Table 81A.
  • a significant reduction in the mean lesion count was observed as early as week 2 for both 1.5% and 3% doses of FMX103 vs. the vehicle (1.5% and 3%, p ⁇ 0.01, p ⁇ 0.05 respectively ANCOVA, intent-to-treat analysis).
  • the mean reduction in inflammatory lesion count (absolute change) of each treatment group vs. its baseline was 10.9 for the 1.5% dose, 9 for the 3% dose, and 4 for vehicle. (see FIG. 1A ; Table 81B).
  • the corresponding percent reductions were 30% and 26% for the FMX103 1.5% and 3% groups, respectively, and 16% for the vehicle (1.5% p ⁇ 0.01, ANCOVA, intent-to-treat analysis) (see FIG. 1B ; Table 81C).
  • P-value is the test result for treatment effect versus vehicle.
  • b P-value for treatment by pooled site based on analysis of covariance on unimputed data with effects of treatment, baseline, and pooled site, and treatment by pooled site interaction.
  • c From Levene's test on unimputed data.
  • d From Shapiro-Wilk test on unimputed data.
  • e From a non-parametric ANCOVA with effects of treatment, baseline, and pooled site.
  • a Subjects experiencing ⁇ 1 AEs are counted only once for each AE term.
  • b Eczema, rosacea, pruritus, face burning or stinging , and skin burning sensation were classed as skin and subcutaneous tissue disorders (TEAE dermal related).
  • FMX103 advantageously reduced erythema in moderate to severe cases, as well as avoided systemic side effects.
  • Oracea® is the drug of choice for treatment of papulopustular rosacea.
  • the current Phase 2 trial showed that FMX103 had surprising advantages, since it achieved greater effect despite a shorter treatment period (12 weeks vs. 16 weeks) and despite a higher baseline severity of rosacea (both mean lesion count and IGA severity, see Table 88), while avoiding systemic adverse events associated with oral doxycycline.
  • Table 88 the results for reduction of absolute mean lesion count of FMX103 (a 21 point reduction for the 1.5% group) and percent change of lesion count (61.4% for the 1.5% group) were all higher than the results observed with Oracea®.
  • OBJECTIVE To characterize minocycline pharmacokinetics and relative bioavailability following multiple-dose topical administration of minocycline hydrochloride (HCl) foam 4% (FMX-101 4%) as compared with single-dose oral of minocycline HCl extended-release tablets (Solodyn®) in both adult and pediatric subjects with moderate-to-severe acne.
  • RESULTS Two Phase I, single-center, nonrandomized, open-label, active-controlled, 2-period, 2-treatment crossover clinical studies were conducted.
  • Period 1 mg/kg topical minocycline foam 4% was applied, once daily for 21 days (Period 2).
  • Each application was approximately 4 g (a maximal-use dose).
  • Serial blood samples were obtained before and after administration of oral minocycline and each topical application of minocycline foam 4% on days 1, 12, and 21.
  • Day 1 On the day of initial dosing (Day 1), subjects checked into the clinic where they were confined until 1 hour after study drug was administered. Predose clinical assessments were performed and a 1 mL blood sample for PK analysis was obtained before study drug was administered.
  • Pediatric subjects received a 4 g, once-daily topical application of FMX101 4% for 7 days. Blood samples were collected at 3, 12, 16, and 24 hours after application on day 7.
  • SUBJECTS Adults were eligible for this study if they were 18 to 35 years of age; children were eligible for the pediatric study if they were 9 to 16 years and 11 months of age and in good health, as judged on the basis of their medical history and the screening procedures. They were required to have moderate-to-severe facial acne vulgaris as well as acne affecting at least two additional regions of the body (neck, upper chest, upper back, or arms). Body mass index of the subjects was specified to range from 18.5 to 29.9 kg/m 2 . Use of tobacco and/or nicotine during the 30 days prior to the screening visit was prohibited, and all subjects were required to have a negative test for drug abuse and to be able to fully comply with the study requirements. All subjects provided written, informed consent.
  • Subjects were excluded if they met any one of the following criteria: female who was pregnant or lactating, or planning a pregnancy; use of medicated cleansers or topical acne treatment within 1 week prior to enrollment, or use of topical retinoids, anti-inflammatories, corticosteroids, or systemic antibiotics or other systemic acne treatments within 4 weeks prior to enrollment, or use of systemic retinoids or corticosteroids within 12 weeks prior to enrollment; any abnormal laboratory values at baseline; any dermatologic condition of the face or facial hair, or any other conditions that, in the opinion of the investigator, could have interfered with the clinical evaluations or the course of the study, or exposed the subject to undue risk.
  • SAMPLING During Period 1, subjects received a single oral dose of minocycline; blood samples were obtained before dosing and through 96 hours (at 30 minutes and at 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 48, 72, and 96 hours) after administration of oral minocycline. During Period 2, topical minocycline foam 4% was applied daily for 21 days. Blood samples were obtained before dosing and at 2, 4, 8, 12, 16, and 24 hours after the first topical application of minocycline foam 4% (Period 2, day 1). On days 6, 9, 10, 11, and 16, blood samples were obtained at approximately 30 minutes before the scheduled application. On days 12 and 21, blood samples were obtained at 30 minutes before and at 2, 4, 8, 12, 16, and 24 hours after topical application of minocycline foam 4%. Day 21 was the last day of application, at which time all assessments and safety procedures were performed. After the final application, subjects were asked to return for additional blood sampling on days 23, 24, and 25.
  • BIOANALYTICAL METHODS Blood samples were collected and centrifuged, and the separated plasma was stored at approximately ⁇ 70° C. Plasma minocycline concentrations were determined using validated liquid chromatography with a tandem mass spectrometry detection method (Nuvisan GmbH); the limit of detection was 0.270 ng/mL.
  • PHARMACOKINETIC ANALYSES Noncompartmental pharmacokinetic parameters for minocycline were calculated for all subjects for each day during Period 1 and on days 1, 12, and 21 for Period 2. Pharmacokinetic parameters included the following: C max (maximum plasma concentration); t max (time of maximum measured plasma concentration); AUC 0-inf (area under the plasma concentration vs time curve [AUC] from time 0 to infinity); AUC 0-tldc (AUC from time 0 to the time of last detectable concentration); t 1/2 (terminal phase half-life); C 24 (minocycline concentration 24 hours after topical application of minocycline foam 4%); and AUC 0-tau (AUC during the 24-hour dosing interval for topical minocycline foam 4%).
  • C max maximum plasma concentration
  • t max time of maximum measured plasma concentration
  • AUC 0-inf area under the plasma concentration vs time curve [AUC] from time 0 to infinity
  • AUC 0-tldc AUC from time 0 to
  • AUC 0-tldc was calculated by the linear trapezoidal method, and AUC 0-inf was calculated as the sum of AUC 0-tldc plus the ratio of the last measurable plasma concentration to the terminal-phase rate constant; both of these assessments were performed for the oral minocycline dose only. Accumulation ratio was calculated by dividing the AUC 0-tau of day 12 or day 21 by the AUC 0-tau of day 1 for day 12 and day 21, respectively, where tau is 1 day (24 hours).
  • SAFETY EVALUATION Safety was assessed by the evaluation of reported and observed adverse events (AEs), vital signs (blood pressure, heart rate), clinical laboratory assessments (hematology, chemistry, and urinalysis), and electrocardiograms (ECGs). The number and percentage of subjects were documented for (1) any treatment-emergent AE (TEAE); (2) any treatment-related TEAE (probable, possible); (3) any serious TEAE; (4) any severe TEAE; and (5) any TEAE leading to drug withdrawal. The intensity, duration, and causal relationship to the investigational products were rated for all AEs.
  • AEs adverse events
  • vital signs blood pressure, heart rate
  • clinical laboratory assessments hematology, chemistry, and urinalysis
  • ECGs electrocardiograms
  • STATISTICAL ANALYSES Descriptive statistics were reported for minocycline concentration data at each sample time and were also calculated for all pharmacokinetic parameters. Actual sample collection times were used for the purpose of calculating pharmacokinetic parameters. All deviations from the scheduled sampling time were reported in the final report as “Sample Time Deviations.” No values of kel, AUC 0-inf , or t y , were reported for cases that did not exhibit a terminal log-linear phase in the concentration vs time profile. Geometric mean was calculated for C max , AUC 0-tldc , AUC 0-inf , and AUC 0-tau , and the harmonic mean was calculated for t 1/2 .
  • RESULTS In total, 30 subjects were enrolled, and all completed the study as planned. The mean age of the subjects was 22.6 years (range, 18 to 30 years). They were mostly white (90%) and female (60%). All subjects had moderate-to-severe acne at baseline evaluation. Treatment adherence rate was high: only 2 subjects missed a single topical minocycline foam 4% application (on day 3) and only 1 subject missed multiple topical minocycline foam 4% applications (on days 9, 10, and 11).
  • FIG. 4B The change in mean plasma minocycline concentration with time following topical application of minocycline foam 4% is shown in FIG. 4B .
  • the plasma concentration at 24 hours after topical application of minocycline foam 4% was low; geometric mean C 24 values on days 1, 12, and day 21 were 1.192, 0.869, and 0.821 ng/mL, respectively (Table 89).
  • FIG. 4C A comparison of the plasma minocycline concentration vs time profiles over the first 24 hours after oral minocycline or topical minocycline foam 4% administration is shown in FIG. 4C .
  • the plasma minocycline concentration following topical application of minocycline foam 4% was very low; the geometric mean C max values ranged from 1.1 ng/mL to 1.5 ng/mL (Table 89).
  • the daily dosing of topical minocycline foam 4% was associated with a mean (range) accumulation ratio of 0.85 (0.00, 2.56) and 0.79 (0.39, 1.66) at day 12 and day 21, respectively (Table 89). There was no evidence that minocycline had accumulated during the 21 days of topical application of minocycline foam 4%. In pediatric subjects, following topical application of FMX101 4% for 7 days, the overall average plasma concentration of minocycline across all ages was 2.5 ng/mL (relatively constant over the entire sampling interval). See Table 92.
  • the mean overall maximum observed plasma concentration (C max ) plasma minocycline concentration 24 hours after FMX101 application (C 24 ), and area under the concentration-time curve from time zero (predose) through 24 hours (AUC 0-tau ) were approximately 3.1 ng/mL, 2.5 ng/mL, and 61 ng*h/mL, respectively. See Table 93.
  • C max , C 24 , and AUC 0-tau tended to be higher in the subjects aged 9 to 11 years and subjects aged 12 to 14 years than the subjects aged 15 years to 16 years 11 months, however the small sample size precludes making any conclusions regarding the effect of age on these PK parameters.
  • FMX101 4% was safe and well-tolerated. There were no drug-related treatment-emergent adverse events (TEAEs), no TEAEs that led to treatment discontinuation, and no serious adverse events. Overall, there was a high rate of subject satisfaction with the use of FMX101, 4%. A majority of subjects reported they were “satisfied” or “very satisfied” with the treatment compared with topical acne therapies used previously. Additionally, the subjects were satisfied with the feel of the foam on the skin.
  • TEAEs drug-related treatment-emergent adverse events
  • GMR Geometric LSM ratio
  • b Day 12 AUC 0-tau for topical minocycline foam 4% (FMX-101) vs AUC 0-inf for oral minocycline (Solodyn).
  • c Day 21 AUC 0-tau for topical minocycline foam 4% vs AUC 0-inf (FMX-101) for oral minocycline (Solodyn).
  • AUC area under the curve
  • C max maximum plasma concentration
  • CI confidence interval
  • AUC 0-inf AUC from time 0 to infinity
  • AUC 0-tau AUC during the 24-hour dosing interval for topical minocycline foam 4%.
  • Terminal phase rate constant (kel) and apparent terminal phase half-life (T 1/2 ) were not estimable because either there were fewer than 3 values in the terminal phase, the slope was positive, or the T 1/2 estimate was more than half the range of the terminal phase. 2 Median (minimum, maximum) shown for T max .
  • the improved patient satisfaction with the use of FMX101, 4% may correlate at least in part with the lower blood exposure of the minocycline after application of the FMX101, 4% formulation versus oral administration of SOLODYN®. Additionally, the lower blood exposure of the minocycline in patients treated with FMX101, 4% may correlate with a lower incidence of treatment-related adverse events.
  • Significant improvement at Week 12 was demonstrated in the symptom subscale scores for both doses of FMX103 and in the emotional subscale scores for FMX103 1.5%, as compared to vehicle foam.
  • compositions and methods provided herein are not limited to the precise embodiments, and that various changes and modifications can be effected therein by those skilled in the art without departing from the scope or spirit of the disclosure as defined in the appended claims.

Abstract

Provided are compositions and methods for treating rosacea and acne. Specifically, a gel or foam composition having a tetracycline antibiotic and uses thereof for treating rosacea and acne are provided.

Description

The present application is a continuation of U.S. application Ser. No. 15/699,692 filed Sep. 8, 2017; which claims the benefit of priority to U.S. Provisional Patent Application No. 62/385,189 filed Sep. 8, 2016; U.S. Provisional Patent Application No. 62/393,545 filed Sep. 12, 2016; U.S. Provisional Patent Application No. 62/444,960 filed Jan. 11, 2017; and U.S. Provisional Patent Application No. 62/550,158 filed Aug. 25, 2017; the entire contents of each are incorporated herein by reference.
BACKGROUND
Rosacea is a chronic acneiform disorder affecting skin and potentially the eye. It is a syndrome of undetermined etiology characterized by both vascular and papulopustular components involving the face and occasionally the neck, scalp, ears and upper trunk. Clinical findings include mid facial erythema, telangiectasis, papules and pustules, and sebaceous gland hypertrophy. Rosacea is characterized by episodic flushing of affected areas, which can be triggered by various factors, such as consumption of alcohol, hot drinks, spicy foods or physical exercise. Facial rosacea is classified/graded in multiple clinical forms: (1) erythematotelangiectatic rosacea which is characterized by (semi-) permanent erythema and/or flushing; (2) papulopustular rosacea, characterized by presence of inflammatory lesions such as papules and pustules; (3) phymatous rosacea characterized by circumscribed permanent swelling/thickening of skin areas, typically the nose; and (4) ocular rosacea characterized by the appearance of redness in eyes and eyelids due to telangiectasias and inflammation, feeling of dryness, irritation, or gritty, foreign body sensations, itching, burning, stinging, and sensitivity to light, eyes being susceptible to infection, or blurry vision.
Rosacea occurs most commonly in adult life, between the ages of 30 and 60 years. It is very common in skin types I-II (according Fitzpatrick) and more common in Caucasians, with a prevalence of up to 5% in the U.S. and in Europe. It is estimated that from 10 to 20 million Americans have the condition.
Topical treatments for rosacea include metronidazole, azelaic acid and brimonidine tartrate. However, approved topical therapies rarely show sufficient clinical efficacy or provide only cosmetic relief for several hours. Mainstays of treatment for rosacea are the oral tetracyclines: doxycycline and minocycline. Low-dose systemic doxycycline (Oracea® resp. Oraycea®) is approved for rosacea whereas systemic minocycline is used in many cases for rosacea off-label. Minocycline is generally regarded as having less photosensitivity than doxycycline. The long-term use of systemic antibiotics is limited by potential liver toxicity, phototoxicity, drug-drug interactions and development of antibacterial resistance. Hence, an efficacious topical tetracycline formulation is highly warranted to close this medical gap.
“Acne” is a general term that describes another very common skin disorder, which afflicts many people. The prevalence of adult acne is about 3% in men and between about 11% and 12% in women. Moderate to severe acne is observed in 14% of acne patients. There are various types of acne recognized in the field, including, for example: acne vulgaris and acne conglobata. Acne vulgaris (cystic acne or simply acne) is generally characterized by areas of skin with seborrhea (scaly red skin), comedones (blackheads and whiteheads), papules (pinheads), pustules (pimples), nodules (large papules) and/or possibly scarring. Acne vulgaris may affect the face, the upper part of the chest, and the back. Severe acne vulgaris is inflammatory, but acne vulgaris can also manifest in non-inflammatory forms. Acne conglobata is a severe form of acne, and may involve many inflamed nodules that are connected under the skin to other nodules. Acne conglobata often affects the neck, chest, arms, and buttocks.
There are typically three levels of acne vulgaris: mild, moderate, and severe. Mild acne vulgaris is characterized by the presence of few to several papules and pustules, but no nodules. Patients with moderate acne typically have several to many papules and pustules, along with a few to several nodules. With severe acne vulgaris, patients typically have numerous or extensive papules and pustules, as well as many nodules.
Acne may also be classified by the type of lesion: comedonal, papulopustular, and nodulocystic. Pustules and cysts are considered inflammatory acne.
Mild to moderate acne is often treated topically, using, e.g., retinoids, benzoyl peroxide and some antibiotics. Topical retinoids are comedolytic and anti-inflammatory. Antibiotics such as tetracycline antibiotics are generally only available orally or by injection. Topical antibiotics are mainly used for their role against P. acnes. Benzoyl peroxide products are also effective against P. acnes. Unfortunately, these medications can lack satisfactory safety and efficacy profiles. In one or more embodiments, there are provided herein new and better topical anti-acne treatments and formulations.
Diagnosis of acne vulgaris may begin with a visual inspection to determine the presence and amount of comedones, papules, pustules, nodules, and other inflammatory lesions. A diagnosis of acne vulgaris may also be confirmed via clinical laboratory tests, for example, measurement of testosterone levels and performing skin lesion cultures.
Systemic antibiotics are generally indicated for moderate or severe acne. The most commonly used systemic antibiotics are tetracycline and their derivatives (e.g., minocycline). These agents have anti-inflammatory properties and they are effective against P. acnes. The more lipophilic antibiotics, such as minocycline and doxycycline, are generally more effective than tetracycline. Greater efficacy may also be due to less P. acnes resistance to minocycline.
Oral tetracycline antibiotics are generally not recommended in the treatment of minor mild acne, primarily because they cause hyper-pigmentation, erythema and dryness. Oral tetracycline therapy may induce hyperpigmentation in many organs, including nails, bone, skin, eyes, thyroid, visceral tissue, oral cavity (teeth, mucosa, alveolar bone), sclerae and heart valves. Skin and oral pigmentation have been reported to occur independently of time or amount of drug administration, whereas other tissue pigmentation has been reported to occur upon prolonged administration. Skin pigmentation includes diffuse pigmentation as well as over sites of scars or injury. Oral tetracyclines should not be used for pregnant women or nursing mothers due to teratogenic effects. Accordingly, there exists a need for topical formulations with tetracyclines which can avoid the side effects observed with oral applications.
For example, SOLODYN®, a commercially available product, is indicated to treat only inflammatory lesions of non-nodular moderate to severe acne vulgaris in patients 12 years of age or older. Adverse side effects from the use of SOLODYN® include, inter alia, diarrhea, dizziness, lightheadedness, and nausea, in addition to allergic reactions, bloody stool, blurred vision, rectal or genital irritation, and red, swollen, blistered, or peeling skin. Because of these side effects, the Food and Drug Administration added oral minocycline to its Adverse Event Reporting System (AERS), a list of medications under investigation by the FDA for potential safety issues.
Thus, a product that requires a shorter treatment period, has no or fewer adverse effects, does not cause or causes less skin irritation, and treats both inflammatory and non-inflammatory lesions would be advantageous and could improve patient compliance. There also exists a need for improved compositions and methods for treating rosacea, as well as acne. Provided herein are compositions and methods to address those needs.
SUMMARY
In one aspect, provided is a method for treating rosacea or acne in a subject in need thereof, the method comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
In another aspect, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein said tetracycline antibiotic is present in said gel or foam composition in an amount effective to treat rosacea or acne in a subject.
In an exemplary embodiment, the gel or foam composition provided herein further comprises at least one hydrophobic solvent, at least one viscosity-modifying agent, or a combination thereof. In some embodiments, the composition comprises silicon dioxide (SiO2).
In a particular embodiment, the tetracycline antibiotic is minocycline hydrochloride or doxycycline hyclate, or a combination thereof.
In yet another aspect, provided is a method of manufacturing a gel or foam composition having a tetracycline antibiotic, the method comprising: providing a composition having one or more hydrophobic solvents; heating said composition; adding fatty alcohols, fatty acids, and waxes; cooling said composition; adding SiO2; and adding tetracycline antibiotic.
In a further aspect, provided is a method for treating rosacea or acne in a subject in need thereof, the method comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic, wherein said tetracycline antibiotic is minocycline.
In a yet further aspect, provided is a hydrophobic foam or gel composition comprising: about 50% by weight of soybean oil; about 23.6% by weight of coconut oil; about 5% by weight of cyclomethicone; about 2.8 to 4.3% by weight of light mineral oil; about 3.5% by weight of cetostearyl alcohol; about 3% by weight of stearic acid; about 2.5% by weight of myristyl alcohol; about 2% by weight of hydrogenated castor oil; about 2% by weight of beeswax; about 1.5% by weight of stearyl alcohol; about 1.1% by weight of behenyl alcohol; and about 1.5 to 3% by weight of minocycline.
In an additional aspect, provided is a method for treating a rosacea in a subject in need thereof, the method comprising: administering to said subject a hydrophobic foam or gel composition comprising about 50% by weight of soybean oil; about 23.6% by weight of coconut oil; about 5% by weight of cyclomethicone; about 2.8 to 4.3% by weight of light mineral oil; about 3.5% by weight of cetostearyl alcohol; about 3% by weight of stearic acid; about 2.5% by weight of myristyl alcohol; about 2% by weight of hydrogenated castor oil; about 2% by weight of beeswax; about 1.5% by weight of stearyl alcohol; about 1.1% by weight of behenyl alcohol; and about 1.5 to 3% by weight of minocycline.
In an additional aspect, provided is a method for reducing papules and pustules in a subject in need thereof, the method comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic to treat, ameliorate, reduce, or cure acne or rosacea.
In an additional aspect, provided is a method for reducing skin lesion in a subject in need thereof, the method comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
In an additional aspect, provided is a method for reducing skin redness in a subject in need thereof, the method comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
In an additional aspect, provided is a method for treating erythema in a subject in need thereof, the method comprising: administering to said subject a topical composition comprising an effective amount of a tetracycline antibiotic.
In an additional aspect, provided is a method for treating a rosacea in a subject in need thereof, the method comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
In an additional aspect, provided is a method for reducing papules and pustules in a subject in need thereof, the method comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
In an additional aspect, provided is a method for reducing skin lesions in a subject in need thereof, the method comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
In an additional aspect, provided is a method for reducing skin redness in a subject in need thereof, the method comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
In an additional aspect, provided is a method for treating erythema in a subject in need thereof, the method comprising: administering to said subject a placebo topical composition, wherein said composition is free of a tetracycline antibiotic.
Other features and advantages of the compositions and methods will become apparent from the following detailed description examples and figures. It should be understood, however, that the detailed description and the specific examples, while indicating preferred embodiments, are given by way of illustration only, since various changes and modifications within the spirit and scope of the disclosure will become apparent to those skilled in the art from this detailed description.
BRIEF DESCRIPTION OF THE FIGURES
The disclosure will be better understood from a reading of the following detailed description taken in conjunction with the drawings below:
FIG. 1A-FIG. 1B show significant decrease in the number of papules and pustules after treatment with a 1.5% and 3% minocycline foam. Specifically, FIG. 1A shows absolute change in papules and pustules, while FIG. 1B shows percent reduction in papules and pustules.
FIG. 2A-FIG. 2B show investigator's global assessment (IGA) results. FIG. 2A shows subjects with IGA improvement ≥2 grades and FIG. 2B shows subjects with IGA improvement of at least two grades which resulted in clear (0) to almost clear (1) score.
FIG. 3 shows clinical erythema assessment change from the baseline after 12 weeks of treatment.
FIG. 4A-FIG. 4B show mean plasma minocycline concentration vs time profiles following a single oral dose of minocycline during Period 1 (FIG. 4A) and topical application of minocycline foam 4% daily for 21 days during Period 2 (FIG. 4B).
FIG. 4 C shows comparison of mean plasma minocycline concentration over the first 24 hours after oral minocycline dose or topical minocycline foam 4% administration over the 24 hours at day 1, day 12 and day 21. Graphs are shown with semi-log scale.
FIG. 5 shows mean plasma minocycline pre-dose concentration-vs-time profile for topical minocycline foam 4% from day 1 through day 21 (linear scale).
FIG. 6 shows changes in RosaQoL (Rosacea Quality of Life) index score at Week 12 of treatment with two doses of FMX103 (1.5% and 3%) and vehicle foam as compared to baseline (prior to treatment).
DETAILED DESCRIPTION
Provided herein are compositions and methods for treating rosacea. Specifically, provided herein are gel and foam compositions having a tetracycline antibiotic and uses thereof for treating rosacea and/or acne.
The method provided herein includes administering topically to a surface having the disorder a therapeutic hydrophobic composition comprising a tetracycline antibiotic. In one or more embodiments, the hydrophobic composition comprises a carrier comprising about 60% to about 99% by weight of at least one hydrophobic solvent; at least one viscosity-modifying agent selected from the group consisting of a fatty alcohol, a fatty acid and a wax; and a tetracycline antibiotic. In some embodiments, the composition comprises silicon dioxide (SiO2).
Further provided herein is a method of treating human skin disorders such as rosacea or rosacea related diseases or disorders by topical application of a foam or gel or liquid gel as described herein to a patient in need thereof.
According to one or more embodiments provided herein, the tetracycline is a minocycline or doxycycline, which are semi-synthetic tetracycline antibiotic. In a particular embodiment, the tetracycline is minocycline. The tetracycline drug is usually bacteriostatic in action. It can, among other options, exert its antimicrobial activity by inhibiting protein synthesis. It can also have an antiviral effect. According to one or more embodiments, the minocycline is minocycline hydrochloride (minocycline HCl; hereinafter “MCH”). MCH is a yellow crystalline powder that is sparingly soluble in water, slightly soluble in alcohol and practically insoluble in chloroform and in ether.
Minocycline is known to be highly sensitive to air and light and undergoes rapid degradation. Therefore, storage of foamable formulations in airtight sealed containers under pressure with propellant can contribute to preserving stability subject to selection of compatible canisters and accessories. Likewise, production and/or filling under vacuum in an oxygen free environment can help.
The ingredients of the carrier are selected for their compatibility with tetracycline antibiotics as described. Since it is not sufficient to identify single ingredients that are compatible with tetracycline antibiotics, formulations had to be found in which the ingredients in combination were also compatible with tetracycline antibiotics.
The hydrophobic foamable composition (e.g., foam or gel) provided herein comprises: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) about 1% to about 22% by weight of at least one viscosity modifying agent; and c) about 0.1% to about 18% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
The hydrophobic foamable composition or gel provided herein comprises: a) about 70% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 0.5% to about 8% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 75% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 1% to about 4% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
The hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 88% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 2% to about 6% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline).
According to one or more embodiments, there are provided substantially surfactant-free oleaginous formulations comprising a tetracycline, such as a minocycline, for use in treatment of a rosacea disease, and/or acne related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and other superficial infections, including skin infections. In one or more embodiments the tetracycline acts to reduce oxidative stress and/or inflammation in skin pathologies. In one or more embodiments the tetracycline is effective where the condition is accompanied by apoptotic cell death.
In one or more embodiments, the tetracycline is minocycline HCl at a concentration of about 1.5% or about 3%, or any concentration in between.
Definitions
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as is commonly understood by one of ordinary skill in the art to which this disclosure belongs. All ranges disclosed herein include the endpoints. The use of the term “or” shall be construed to mean “and/or” unless the specific context indicates otherwise. All patents, applications, published applications, and other publications are incorporated by reference in their entirety. In the event that there is a plurality of definitions for a term herein, those in this section prevail unless stated otherwise.
All % values are provided on a weight (w/w) basis.
Various carriers and compositions or formulations are described herein. They are often described for use in a method. A reference to or example of a carrier, composition or formulation for use in one method does not in any way limit the carrier, composition or formulation for use just in that method, but it can be for use in any other method or embodiment described herein. The carriers, compositions or formulations described herein are in one or more embodiments provided as carriers, compositions or formulations and are in one or more embodiments provided as a product even where they are described only in relation to their use in a method.
As used herein, the term “about” has its usual meaning in the context of pharmaceutical and cosmetic formulations to allow for reasonable variations in amounts that can achieve the same effect. By the term “about” herein it is meant as indicated above and also that a figure or range of figures can vary in an embodiment plus or minus up to 30%. For example, if an amount of “about 1” is provided, then the amount can be up to 1.3 or from 0.70. In other embodiments, it can reflect a variation of plus or minus 20%, in which case “about 2” can reflect a variation of 1.6 to 2.4. In still further embodiments, it can describe a variation of plus or minus 10%, in which case “about 1” can reflect a variation of 0.9 to 1.1. In still further embodiments, it can describe a variation of plus or minus 5%, in which case “about 5” can reflect a variation of 4.75 to 5.25. In cases where “about X” will lead to a figure of above 100%, the term in one or more embodiments can be read as reflecting up to 100% by weight less the total of the minimum amount of the other ingredients. Likewise, it will be appreciated by one skilled in the art to the extent X is reduced from that upper level the amounts of the other ingredients are increased appropriately. As will be appreciated by one of skill in the art, there is some reasonable flexibility in formulating compositions such that where one or more ingredients are varied, successful formulations can still be made even if an amount falls slightly outside the range. Therefore, to allow for this possibility, amounts are qualified by about. In one or more other embodiments, the figures can be read without the term “about.”
As used herein, the terms “composition(s)” and “formulation(s)” can be used interchangeably depending on the context in which they are used as would be appreciated by a person skilled in the art.
The term “room temperature” as used herein, means 20° C. to 25° C. In an embodiment it is 20° C. In an embodiment it is 21° C. In an embodiment it is 22° C. In an embodiment it is 23° C. In an embodiment it is 24° C. In an embodiment it is 25° C.
The term “thixotropic,” as used herein, means that the formulation shows a decrease in viscosity upon application of shear force. The structure of the formulation breaks down, leading to a reduction in viscosity. When the formulation is standing without shear force, this decrease in viscosity is recovered over time.
As used herein, the term “gel” means a jelly-like material that can have properties ranging from soft and fluid to hard and tough. Gels can be in a liquid, a semi-liquid, a semi-solid or a solid state. Solid gels are defined as a substantially diluted cross-linked system, which exhibits no flow when in the steady-state. By weight, gels are mostly liquid, yet they behave like semi-solids due to a three-dimensional cross-linked network of a solidifying, gelling or thickening agent within the liquid. It is the crosslinks within the fluid that give a gel its structure (hardness) and contribute to stickiness (tack). Depending on the amounts of gelling agent in a formulation, the gel can be semi-solid with some limited flowability, such that when the semi-solid gel is placed in a tube and is inclined horizontally from a vertical position it will slowly flow from the vertical towards the horizontal or it can be a liquid gel where the amount of gelling agent or gelling effect is lower, such that the gel structure or connections are weaker or loose so that when placed in a tube and tilted from a vertical position to a horizontal position, the gel readily flows and adapts to the horizontal position. The rheological properties of gels at different surface temperatures can influence the release and bioabsorption of drugs therefrom.
The term “liquid gel” refers, inter alia, to a formulation after propellant is added (whereas, prior to adding the propellant, the formulation is a gel), or where the gel is loose or fluid or such that when subjected to gravity, it will pour or become liquid.
The terms “waterless” or “water-free” as used herein, mean that the composition contains no free or unassociated or absorbed water. The terms “substantially water-free” or “substantially waterless” refer to carriers that contain at most incidental or trace amounts of water. As used herein, “low water” means the composition contains about or less than 1% by weight; about or less than 0.9% by weight; about or less than 0.8% by weight; about or less than 0.7% by weight; or about or less than 0.6% by weight. As used herein, “substantially waterless” or “substantially water free” means the composition contains about or less than 0.5% by weight; about or less than 0.4% by weight; about or less than 0.3% by weight; about or less than 0.2% by weight; or about or less than 0.1% by weight. In one or more embodiments, the composition is “essentially water-free,” meaning about or less than 0.05% by weight; or about or less than 0.01% water is present in the composition, by weight.
By the term “single phase” it is meant that after addition of propellant to the composition or carrier, the liquid components of the foamable composition or carrier are fully miscible, and the solid components, if any, are either dissolved or homogeneously suspended in the composition so that only one phase is visible.
By the term “substantially a single phase” it is meant that the composition or carrier, after addition of propellant, is primarily or essentially a single phase as explained above, but can also have present a small amount of material which is capable of forming a separate phase amounting to less than about 5% by weight of the composition or carrier after the addition of propellant, or less than about 3% by weight, and/or less than about 1% by weight of the composition.
The term “unstable” as used herein, means a compound, e.g., an active agent, which is oxidized and/or degraded within less than a day, and in some cases, in less than an hour, upon exposure to air, light, skin, or water or a pharmaceutical excipient under ambient conditions.
The term “unstable active agent” as used herein, means an active agent which is oxidized and/or degraded within less than a day, and in some cases, in less than an hour upon exposure to air, light, skin, water, or a pharmaceutical excipient under ambient conditions.
It should be noted that the terms “surfactant,” “surface active agent,” and “emulsifier” in the context used herein, refer to stand alone compounds used to reduce surface tension between two substances or phases, and which are also capable of stabilizing an emulsion of water and oil. Reduction of surface tension can be significant in foam technology in relation to the ability to create small stable bubbles. “Surfactant” and “emulsifier,” as used herein, do not include compounds which do not function effectively as standalone compounds for reducing surface tension between two substances or phases and which are not capable of stabilizing an emulsion of water and oil. For example, a surfactant or emulsifier as provided herein does not include fatty acids, does not include fatty alcohols, and does not include propoxylated lanolin oil derivatives. In the context of the present disclosure, fatty acids and fatty alcohols are defined as foam adjuvants. Similarly, propoxylated lanolin oil derivatives in the context herein are defined as emollients.
“Standard surfactant,” “customary surfactant” or “stand alone surfactant” refer to customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and amphiphilic surfactants. Many standard surfactants are derivatives of fatty alcohols or fatty acids, such as ethers or esters formed from such fatty alcohols or fatty acids with hydrophilic moieties, such as polyethylene glycol (PEG). However, a native (non-derivatized) fatty alcohol or fatty acid, as well as waxes are not regarded as a standard surfactant.
The term “co-surfactant” as used herein means a molecule which on its own is not able to form and stabilize satisfactorily an oil-in-water emulsion, but when used in combination with a surfactant as defined herein, the co-surfactant has properties which can allow it to help a surfactant create an emulsion and can boost the stabilizing power or effect of the surfactant. Examples of co-surfactants include fatty alcohols, such as cetyl alcohol, or fatty acids, such as stearic acid. Cetyl alcohol is a waxy hydrophobic substance that can be emulsified with water using a surfactant. Some substances can have more than one function and for example, fatty alcohols can in some formulations act as a co-solvent. In certain circumstances, a co-surfactant can itself be converted into a surfactant or soap by, for example, adding a base, such as, triethanolamine to a fatty acid like stearic acid.
The term “viscosity-modifying agent” in the context of the present disclosure is an agent which, when added to a hydrophobic oil, facilitates the creation of a hydrophobic breakable vehicle in the form of a breakable gel or breakable foam. According to the present disclosure, the viscosity-modifying agent is a “foamer complex,” which is also referred as a “foam stabilizer” in this application, comprising a fatty alcohol, a fatty acid and/or a wax. In one or more alternative embodiments the foamer complex is a fatty alcohol and a wax or a fatty acid and a wax. In some embodiments it is a wax. In one or more embodiments the foamer complex or viscosity modifying agent comprises at least one of a fatty alcohol, a wax or a fatty acid. In one or more embodiments the foamer complex or viscosity modifying agent is selected from a group consisting of a fatty alcohol, a wax and a fatty acid. In some embodiments, it is a fatty alcohol. In some embodiments, it is a fatty acid. In some embodiments a fatty alcohol, and/or a fatty acid and/or a wax is an adjuvant. In the context of the present disclosure fatty alcohols, fatty acids and waxes that are compatible with tetracycline antibiotics, and in particular with a minocycline or a doxycycline, are compatible adjuvants.
The term “breakable” refers to a property of a gel or foam wherein the gel or foam is stable upon dispensing from a container, yet breaks and spreads easily upon application of shear or mechanical force, which can be mild, such as a simple rub.
The term “water activity” as used herein represents the hygroscopic nature of a substance, or the tendency of a substance to absorb water from its surroundings. Microorganisms require water to grow and reproduce, and such water requirements are best defined in terms of water activity of the substrate. The water activity of a solution is expressed as Aw=P/Po, where P is the water vapor pressure of the solution and Po is the vapor pressure of pure water at the same temperature. Every microorganism has a limiting Aw, below which it will not grow; e.g., for Streptococci, Klebsiella spp, Escherichia coli, Clostridium perfringens, and Pseudomonas spp, the Aw value is 0.95. Staphylococcus aureus is most resistant and can proliferate with an Aw as low as 0.86, and fungi can survive at an Aw of at least 0.7. The identification of a “solvent,” as used herein, is not intended to characterize the solubilization capabilities of the solvent for any specific active agent or any other component of the foamable composition. Rather, such information is provided to aid in the identification of materials suitable for use as a component of the foamable composition described herein.
As used herein, the term “preventing” refers to avoiding the onset of a disorder or condition from occurring in a subject that has not yet been diagnosed as having the disorder or condition, but who may be susceptible to it.
As used herein, the term “treatment” refers to inhibiting the disorder or condition, i.e., arresting its development; relieving the disorder or condition, i.e., causing regression of the disorder or condition or reversing the progression of the disorder or condition; or relieving or reducing one or more symptoms of the disorder or condition.
It should be noted that the term “a method of preventing, treating a disease or a disorder” as provided throughout the specification is interchangeable with the term “use of the composition as a medicament for preventing or treating a disease.” It should be noted that the term “disease” is used interchangeably with the term “disorder.”
It should be noted that the term “substantially free of” an ingredient as provided throughout the specification is intended to mean that the composition comprises less than about 0.5% by weight, e.g., less than about 0.4% by weight, less than about 0.3% by weight, less than about 0.2% by weight, or less than about 0.1% by weight, of an ingredient unless specifically indicated otherwise.
As used herein, the term “essentially free of” an ingredient as provided throughout the specification is intended to mean that the composition comprises less than about 0.05% by weight, less than about 0.01% by weight, less than about 0.001% by weight, or 0% by weight, or insignificant or negligible amounts of the ingredient, unless specifically indicated otherwise.
As used herein, the term “free of” an ingredient as provided throughout the specification is intended to mean that the composition does not comprise any amount of the ingredient, unless specifically indicated otherwise.
The terms “surfactant-free” or “emulsifier-free” or “non-surfactant” refer to compositions which comprise no or negligible levels of surfactants, emulsifiers, or surface active agents. Where a formulation includes insignificant or de minimis amounts of surfactants, emulsifiers, or surface active agents it is considered to be essentially surfactant-free. As used herein, “essentially free” indicates less than about 0.05% by weight, less than about 0.01% by weight, less than about 0.001% by weight, or 0% by weight of a surfactant selected from the group consisting of customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and ampholytic surfactants.
The term “substantially surfactant-free” relates to a composition wherein the ratio between the viscosity-modifying agent and the surfactant is between 10:1 or 5:1; or between 20:1 and 10:1 or between 100:1 and 20:1. In additional embodiments, the term relates to a composition that contains a total of about or less than 0.5% by weight; about or less than 0.4% by weight; or about or less than 0.3% by weight of a surfactant selected from the group consisting of customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and ampholytic surfactants. In some embodiments, the composition comprises about or less than 0.2% by weight of a standard or customary surfactant; about or less than 0.15% by weight; about or less than 0.1% by weight; about or less than 0.05% by weight; or about or less than 0.01% by weight.
By “de minimis” it is meant to be so minor that its effect is to be disregarded.
The terms “hydrophobic gel composition” or “hydrophobic foam composition” or “hydrophobic composition” are intended to mean that the composition has a low solubility in water. In one embodiment, 100 to 1000 parts of water are needed to dissolve or render miscible 1 part of the composition. In another embodiment, 1000 to 10,000 parts of water are needed to dissolve or render miscible 1 part of the composition. In yet another embodiment, more than 10,000 parts of water are needed to dissolve or render miscible 1 part of the composition.
The term “clinical response to treatment”, (“clinical success” or “clinical failure”) in the context of rosacea treatment is derived from efficacy evaluation endpoints. The term “lesion count” relates to the number of inflammatory lesions (e.g., papules and pustules) present in a designated area of the body (e.g., in case of face, on the forehead, left and right cheeks, nose and chin).
The terms “high rates of clinical response” or “high efficacy” or “substantial decrease” in the context herein can relate to an absolute change in inflammatory lesion count of at least 19 compared to baseline, a reduction of about 45% or more in inflammatory lesions count or to where subjects met a success criterion of “clear” or “almost clear” or to an “improvement of 2 grades from the baseline”; or to where subjects receive an excellent score according to Investigator's Global Improvement Assessment; or to where patients receive a two step drop in Patient's Global Improvement Assessment (IGA) score; or wherein according to any of the aforementioned endpoints a statistically significant reduction or improvement is demonstrated as compared to placebo.
By “regular basis” it is meant a repeated or repeatable interval of time which can be by way of illustration, a part of a day, daily, once daily, twice daily, alternative daily, alternate daily, twice weekly, trice weekly, weekly, fortnightly, monthly or some other repeated or repeatable interval for an appropriate period of time wherein a dose is to be applied. The repeated applications can be determined according to the needs of the subject and the disease or disorder. In some circumstances as little as three repeat doses can be required. In other cases, between 3 and 14, in other cases between 14 and 28, in other cases between 28 and 50, in other cases between 50 and 75, in other cases between 75 and 100, and in other cases, such as where prolonged treatment or a long period of maintenance dosing is needed, as many as one, two, or three hundred repeat doses can be needed.
The term “adverse events” describes any unfavorable or unintended sign, symptom, or disease that appears or worsens in a subject after the subject has commenced using the formulation. Examples of what can be considered an adverse event (AE) include any of the following: A new illness, an exacerbation of a sign or symptom of an underlying condition or of a concomitant illness unrelated to participation in the clinical study, a sign or symptom as an effect of the study drug or comparator drug. The common term for such problems is “side effects,” and used by patients and physicians.
The term “serious adverse events” describes any adverse effect that: Results in death, is life-threatening (Note: The term “life-threatening” refers to any adverse event that, as it occurs, puts the subject at immediate risk of death. It does not refer to an adverse event that hypothetically might have caused death if it were more severe.), results in hospitalization or prolongation of current hospitalization (not including hospitalization for a pre-existing condition that has not increased in severity or frequency from the subject's underlying medical condition prior to entry into the study), results in persistent or significant disability/incapacity, is a congenital anomaly/birth defect in the offspring of a subject, is an important medical event (Note: Important medical events may not be immediately life-threatening or result in death or hospitalization but may be considered serious when, based upon appropriate medical judgment, they may jeopardize the subject or require medical or surgical intervention to prevent one of the outcomes listed above. Examples of such medical events include allergic bronchospasm requiring intensive treatment in an emergency room or at home; blood dyscrasias or convulsions that do not result in inpatient hospitalization; or development of drug dependency or drug abuse.)
The term “safe” in the context herein means having no or essentially no adverse events (e.g., any unfavorable or unintended sign, symptom, or disease that appears or worsens on the course of treatment).
It should be noted that the term “polyol” as used herein is an organic substance that contains at least two hydroxyl groups in its molecular structure.
The terms “local safety” or “tolerable” or “enhanced tolerability” in the context herein means having no or essentially no skin irritation symptoms such as telangiectasis, burning or stinging, flushing or blushing, or alternatively, when such symptoms arise they are mild and disappear without interrupting treatment. The score for such symptoms is measured by the investigator at baseline, 2, 4, 8, and 12 weeks and is according to a scale of none, mild, moderate and severe. The score represents the subject's condition at the time of evaluation. The score for burning or stinging and flushing or blushing is based on the subject's symptoms reported for the previous three days. These symptoms should not be included as adverse events, unless a symptom is believed to have been related to the study medication or is the reason for discontinuation from the study.
By “essentially no” in the context of tolerability includes insignificant or de minimis occurrences of skin irritation events manifested in symptoms such as telangiectasis, burning or stinging, flushing or blushing, or mild transient events connected with the application of topical tetracyclines or vehicle.
By “essentially no” in the context of safety includes insignificant or de minimis occurrences of systemic or serious adverse events connected with the application of topical tetracyclines or vehicle.
The clinical response was determined at each study visit inter alia by an absolute inflammatory lesion count, by % change in inflammatory lesion count, by Investigator global assessment, by improvement assessment (by the Investigator) and improvement assessment (by the patient). Photographs were also used to assess the clinical improvement. The improvement assessment by the investigator includes scoring rosacea severity based on the number of inflammatory lesions and level of erythema. The improvement assessment by the patient involves measuring the health-related quality of life of patients through Rosacea Quality of Life (RosaQoL), a self-administered questionnaire.
The term clinical failure is defined as insufficient improvement or deterioration (i.e., an increase or no change in the number of lesions).
By “on average,” with reference to dosage regimes, it is intended to reflect and/or take into account human nature and that a subject may forget to apply a dose or not strictly adhere to the regime, such that even if a subject forgets a dose or does not strictly adhere to the regime it will still be considered as if the regime has been applied. For example, if a subject misses an occasional dose but does not make it up, or alternatively, if having missed a dose applies a compensatory dose on a different day, it is still counted as having complied with the dosage regime.
Compositions
Gel or foam compositions having tetracycline antibiotic are well-known in the art and fully described in U.S. Patent Application Publication Nos. 2014/0121188 and 2013/0225536, which are herein incorporated by reference in their entirety.
In one or more embodiments there is provided a hydrophobic gel or foam composition comprising a tetracycline antibiotic for use in treating a rosacea in a human subject suffering therefrom comprising topically administering the composition to the human subject in a sufficient amount and for a sufficient time to decrease the number of rosacea lesions.
Tetracycline Antibiotic
Any tetracycline antibiotic known to one of skilled in the art can be used. Examples of a tetracycline antibiotic include, for example, but not limited to tetracycline, oxytetracycline, demeclocycline, doxycycline, lymecycline, meclocycline, methacycline, minocycline, rolitetracycline, chlorotetracycline, and tigecycline.
In a particular example, the tetracycline is a minocycline or doxycycline, which are semi-synthetic tetracycline antibiotic. According to one or more embodiments, the tetracycline is minocycline. The tetracycline drug is usually bacteriostatic in action. It can, amongst other options, exert its antimicrobial activity by inhibiting protein synthesis. It can also have an antiviral effect. According to one or more embodiments, the minocycline is minocycline hydrochloride (minocycline HCl; (hereinafter “MCH”)). In some embodiments, MCH is a yellow crystalline powder that is sparingly soluble in water, slightly soluble in alcohol and practically insoluble in chloroform and in ether.
Minocycline and MCH is known to be highly sensitive to air and light and undergoes rapid degradation. Therefore, storage of foamable formulations in airtight sealed containers under pressure with propellant can contribute to preserving stability, subject to selection of compatible canisters and accessories. Likewise, production and/or filing under vacuum in an oxygen free environment can help.
Thus, it was unexpectedly demonstrated that topical minocycline foam offered a safe and effective alternative to topical compositions containing for example, ivermectin, metronidazole, azelaic acid and brimonidine tartrate for the topical treatment of rosacea. The ease of use, with once daily dosing, as well as its broad spectrum of activity, early onset, the low level of adverse events and the rapid reduction in the number of lesions make it an attractive choice and a potentially valuable medication for the treatment of acute bacterial skin infections.
Examples of bacterial infections that can be effectively treated by topical tetracycline antibiotics include, but not limited to, cellulitis, acute lymphangitis, lymphadenitis, erysipelas, cutaneous abscesses, necrotizing subcutaneous infections, staphylococcal scalded skin syndrome, folliculitis, furuncles, hidradenitis suppurativa, carbuncles, paronychial infections, erythrasma, disorders of hair follicles and sebaceous glands, acne, impetigo, rosacea, perioral dermatitis, hypertrichosis (hirsutism), alopecia, including male pattern baldness, alopecia greata, alopecia universalis and alopecia totalis, pseudofolliculitis barbae, and keratinous cyst. For example, rosacea involves papules and pustules, which can be treated with an antibiotic agent, as well as erythema, telangiectasia, and redness, which partially respond to treatment with an antibiotic agent.
In one or more embodiments, the active agent can be a placebo or a cosmetic agent. The foamable composition is suitable for use in the manufacture of a medicament including a placebo or active agent.
In one or more embodiments, the tetracycline antibiotic is hydrophobic.
In one or more embodiments, the Log of the distribution constant of the tetracycline antibiotic at pH 7.0 (buffer/chloroform) is equal to or less than about 0.2.
In one or more embodiments, tetracycline antibiotic forms suitable for use according to the methods and compositions of the present disclosure include, but are not limited to, a free base form, a hydrate form, a salt form, a chelate complex form or a coordination complex form.
In one or more embodiments, the tetracycline antibiotic does not comprise a hydroxyl group at carbons 5, 6, and 7.
In one or more embodiments, the tetracycline antibiotic comprises or is selected from the group consisting of minocycline and doxycycline. In some embodiments, the tetracycline antibiotic is minocycline. In some embodiments, the concentration of minocycline is in a range between about 0.1% to about 10% by weight (e.g., about 0.1% to about 8% by weight, about 0.1% to about 5% by weight, about 0.1% to about 3% by weight, about 0.1% to about 2% by weight, about 0.1% to about 1% by weight, about 0.1% to about 0.75% by weight, about 0.1% to about 0.5% by weight, about 0.1% to about 0.25% by weight, about 0.25% to about 10% by weight, about 0.5% to about 10% by weight, about 0.5% to about 5% by weight, about 0.5% to about 4% by weight, about 0.5% to about 3% by weight, about 1% to about 10% by weight, about 2% to about 10% by weight, about 4% to about 10% by weight, about 6% to about 10% by weight, about 7% to about 10% by weight, about 8% to about 10% by weight, about 0.5% to about 2.0% by weight, about 0.75% to about 1.5% by weight, about 1% to about 3% by weight, about 1% to about 4% by weight, and about 2% to about 6% by weight). In some embodiments, the concentration of minocycline is at least about 0.05% by weight, is at least about 0.1% by weight, at least about 0.5% by weight, at least about 1% by weight, at least about 2% by weight, at least about 4% by weight, at least about 6% by weight, at least about 8% by weight or at least about 10% by weight.
In one or more embodiments, the minocycline is micronized.
In one or more embodiments, the initial dose of tetracycline is about 18%, or about 17.5%, or about 16.5%, or about 15.5%, or about 14.5%, or about 13.5% or about 12.5%, or about 11.5%, or about 10.5% or about 9.5% or about 8.5% or about 7.5% or about 6.5% or about 5.5% or about 4.5% or about 3.5% or about 2.5% or about 1.5%, or about 17%, or about 16%, or about 15%, or about 14%, or about 13% or about 12%, or about 11%, or about 10% or about 9% or about 8% or about 7% or about 6% or about 5% or about 4% or about 3% or about 2% or about 1% or about 0.75% or about 0.5% or about 0.25% or about 0.2% by weight of the composition. In one or more embodiments, the maintenance dose of tetracycline is about 7.5% or about 6.5% or about 5.5% or about 4.5% or about 3.5% or about 2.5% or about 1.5%, 7% or about 6% or about 5% or about 4% or about 3% or about 2% or about 1% or about 0.5%, or about 1.9%, or about 1.8%, or about 1.7%, or about 1.6%, or about 1.55 or about 1.4% or about 1.3% or about 1.2% or about 1.1%, or about 0.9% or about 0.8%, or about 0.7%, or about 0.6% or about 0.4% or about 0.35 or about 0.25% or about 0.2% or about 0.15% or about 0.1% by weight of the composition.
According to one or more embodiments, provided are substantially surfactant-free oleaginous formulations comprising a tetracycline, such as a minocycline, for use in treatment of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder. In one or more embodiments the tetracycline is used for the treatment of rosacea. In one or more embodiments the tetracycline is used for the treatment of impetigo. In one or more embodiments the tetracycline is used for the treatment of acne. In one or more embodiments the tetracycline acts to reduce oxidative stress and/or inflammation in skin pathologies. In one or more embodiments the tetracycline is effective where the condition is accompanied by apoptotic cell death.
In one or more embodiments there is provided a hydrophobic gel or foam composition comprising a minocycline antibiotic for use in treating a disorder selected from the group consisting of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for at least two weeks to the skin, wherein the hydrophobic gel or foam composition is waterless and does not comprise a silicone other than cyclomethicone.
In one or more embodiments there is provided a hydrophobic gel or foam composition comprising a minocycline antibiotic for use in treating a disorder selected from the group consisting of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for at least two weeks to the skin, mucosa, or eye, wherein the hydrophobic gel or foam composition is waterless and does not comprise a polyethylene gelling agent or polyethylene homopolymer or polyethylene copolymer or a customary surfactant.
Foam Vehicle
It is postulated, without being bound by any theory, that the use of a hydrophobic oil based foam vehicle contributes to cutaneous bioavailability, including the achievement of therapeutic levels of minocycline in the pilosebaceous unit. Specific targeting of hydrophobic oil based foam vehicle to the pilosebaceous unit is enabled due the hydrophobic nature of the pilosebaceous gland.
Thus, provided in various embodiments is a vehicle for delivering a therapeutically effective amount of active agent to the sebaceous gland or the sebaceous gland area or the pilosebaceous unit comprising: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) at least one viscosity-modifying agent, wherein said agent is a wax, a fatty alcohol, a fatty acid, or mixtures of any two or more thereof.
Provided herein in various embodiments is a vehicle for delivering a therapeutically effective amount of active agent to the sebaceous gland or the sebaceous gland area or the pilosebaceous unit comprising: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) at least one viscosity-modifying agent comprising a wax and a fatty alcohol or a fatty acid, or both; wherein the active agent is a tetracycline antibiotic.
Additionally, provided herein in various embodiments is a vehicle for delivering a therapeutically effective amount of active agent to the sebaceous gland or the sebaceous gland area or the pilosebaceous unit comprising: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) at least one viscosity-modifying agent, wherein said agent is a wax, a fatty alcohol, a fatty acid, or mixtures of any two or more thereof; wherein the active agent is a minocycline.
Hydrophobic Solvent
In certain embodiments, a hydrophobic solvent can be useful. For example, some essential oils can kill microorganisms or can prevent of conditions that involve microbial infection. Additionally, hydrophobic solvents can useful for the treatment of conditions which involve damaged skin, such as psoriasis or atopic dermatitis. The combination of a hydrophobic solvent and a fatty alcohol or fatty acid can be of possible help in conditions characterized, for example, by infection and/or inflammation.
In one or more embodiments, the at least one hydrophobic solvent comprises or is selected from the group consisting of a mineral oil, a hydrocarbon oil, an ester oil, an ester of a dicarboxylic acid, a triglyceride oil, an oil of plant origin, an oil from animal origin, an unsaturated or polyunsaturated oil, a diglyceride, a PPG alkyl ether, an essential oil, a silicone oil, liquid paraffin, an isoparaffin, a polyalphaolefin, a polyolefin, polyisobutylene, a synthetic isoalkane, isohexadecane, isododecane, alkyl benzoate, alkyl octanoate, C12-C15 alkyl benzoate, C12-C15 alkyl octanoate, arachidyl behenate, arachidyl propionate, benzyl laurate, benzyl myristate, benzyl palmitate, bis(octyldodecyl stearoyl)dimer dilinoleate, butyl myristate, butyl stearate, cetearyl ethylhexanoate, cetearyl isononanoate, cetyl acetate, cetyl ethylhexanoate, cetyl lactate, cetyl myristate, cetyl octanoate, cetyl palmitate, cetyl ricinoleate, decyl oleate, diethyleneglycol di ethylhexanoate, diethyleneglycol di octanoate, diethyleneglycol diisononanoate, diethyleneglycol diisononanoate, diethylhexanoate, diethylhexyl adipate, diethylhexyl malate, diethylhexyl succinate, diisopropyl adipate, diisopropyl dimerate, diisopropyl sebacate, diisostearyl dimer dilinoleate, diisostearyl fumerate, dioctyl malate, dioctyl sebacate, dodecyl oleate, ethylhexyl palmitate, ester derivatives of lanolic acid, ethylhexyl cocoate, ethylhexyl ethylhexanoate, ethylhexyl hydroxystearate, ethylhexyl isononanoate, ethylhexyl palmitate, ethylhexyl pelargonate, ethylhexyl stearate, hexadecyl stearate, hexyl laurate, isoamyl laurate, isocetyl behenate, isocetyl lanolate, isocetyl palmitate, isocetyl stearate, isocetyl salicylate, isocetyl stearate, isocetyl stearoyl stearate, isocetearyl octanoate, isodecyl ethylhexanoate, isodecyl isononanoate, isodecyl oleate, isononyl isononanoate, isodecyl oleate, isohexyl decanoate, isononyl octanoate, isopropyl isostearate, isopropyl lanolate, isopropyl laurate, isopropyl myristate, isopropyl palmitate, isopropyl stearate, isostearyl behenate, isostearyl citrate, isostearyl erucate, isostearyl glycolate, isostearyl isononanoate, isostearyl isostearate, isostearyl lactate, isostearyl linoleate, isostearyl linolenate, isostearyl malate, isostearyl neopentanoate, isostearyl palmitate, isostearyl salicylate, isostearyl tartrate, isotridecyl isononanoate, isotridecyl isononanoate, lauryl lactate, myristyl lactate, myristyl myristate, myristyl neopentanoate, myristyl propionate, octyldodecyl myristate, neopentylglycol dicaprate, octyl dodecanol, octyl stearate, octyl palmitate, octyldodecyl behenate, octyldodecyl hydroxystearate, octyldodecyl myristate, octyldodecyl stearoyl stearate, oleyl erucate, oleyl lactate, oleyl oleate, propyl myristate, propylene glycol myristyl ether acetate, propylene glycol dicaprate, propylene glycol dicaprylate, propylene glycol dicaprylate, maleated soybean oil, stearyl caprate, stearyl heptanoate, stearyl propionate, tocopheryl acetate, tocopheryl linoleate, glyceryl oleate, tridecyl ethylhexanoate, tridecyl isononanoate, triisocetyl citrate, alexandria laurel tree oil, avocado oil, apricot stone oil, barley oil, borage seed oil, calendula oil, cannelle nut tree oil, canola oil, caprylic/capric triglyceride castor oil, coconut oil, corn oil, cotton oil, cottonseed oil, evening primrose oil, flaxseed oil, groundnut oil, hazelnut oil, glycereth triacetate, glycerol triheptanoate, glyceryl trioctanoate, glyceryl triundecanoate, hempseed oil, jojoba oil, lucerne oil, maize germ oil, marrow oil, millet oil, neopentylglycol dicaprylate/dicaprate, olive oil, palm oil, passionflower oil, pentaerythrityl tetrastearate, poppy oil, propylene glycol ricinoleate, rapeseed oil, rye oil, safflower oil, sesame oil, shea butter, soya oil, soybean oil, sweet almond oil, sunflower oil, sisymbrium oil, syzygium aromaticum oil, tea tree oil, walnut oil, wheat germ glycerides, wheat germ oil, PPG-2 butyl ether, PPG-4 butyl ether, PPG-5 butyl ether, PPG-9 butyl ether, PPG-12 butyl ether, PPG-14 butyl ether, PPG-15 butyl ether, PPG-15 stearyl ether, PPG-16 butyl ether, PPG-17 butyl ether, PPG-18 butyl ether, PPG-20 butyl ether, PPG-22 butyl ether, PPG-24 butyl ether, PPG-26 butyl ether, PPG-30 butyl ether, PPG-33 butyl ether, PPG-40 butyl ether, PPG-52 butyl ether, PPG-53 butyl ether, PPG-10 cetyl ether, PPG-28 cetyl ether, PPG-30 cetyl ether, PPG-50 cetyl ether, PPG-30 isocetyl ether, PPG-4 lauryl ether, PPG-7 lauryl ether, PPG-2 methyl ether, PPG-3 methyl ether, PPG-3 myristyl ether, PPG-4 myristyl ether, PPG-10 oleyl ether, PPG-20 oleyl ether, PPG-23 oleyl ether, PPG-30 oleyl ether, PPG-37 oleyl ether, PPG-40 butyl ether, PPG-50 oleyl ether, PPG-11 stearyl ether, herring oil, cod-liver oil, salmon oil, cyclomethicone, a dimethyl polysiloxane, dimethicone, an epoxy-modified silicone oil, a fatty acid-modified silicone oil, a fluoro group-modified silicone oil, a methylphenylpolysiloxane, phenyl trimethicone and a polyether group-modified silicone oil or mixtures of any two or more thereof. In some embodiments, the hydrophobic solvent comprises or is selected from the group consisting of soybean oil, a coconut oil, a cyclomethicone, a light mineral oil, and mixtures of any two or more thereof. In one or more embodiments the solvent is tested individually for compatibility with a tetracycline antibiotic and is only used if it passes a compatibility test as described below in the Methods.
As contemplated herein, the concentration of the hydrophobic solvent and/or viscosity modifying agent in the composition is selected to provide an Aw value selected from the ranges between or of (1) about 0.8 and about 0.9; (2) about 0.7 and about 0.8; and (3) less than about 0.7. Delivering the formulation in a pressurized package does not allow for humidity to be absorbed by the preparation, and therefore, the water free character of the composition is not altered or compromised.
In one embodiment, no preservative is needed in the formulations provided herein because the formulation is a waterless hydrophobic solvent or oil-based formulation having an Aw (water activity) value of less than 0.9, or less than about 0.8, or less than about 0.7, or less than about 0.6, and/or less than about 0.5, which is below the level of microbial proliferation.
In one or more embodiments, the hydrophobic solvent is at a concentration of about 75% to about 90% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of at least about 40% by weight, at least about 50% by weight, at least about 60% by weight, at least about 70% by weight, at least about 90% by weight. In some embodiments, the hydrophobic solvent is at a concentration of less than about 90% by weight, less than about 80% by weight, less than about 70% by weight, less than about 60% by weight, less than about 50% by weight.
In some embodiments, the formulation can include a fatty alcohol. Long chain saturated and mono unsaturated fatty alcohols, e.g., stearyl alcohol, erucyl alcohol, arachidyl alcohol and behenyl alcohol (docosanol) have been reported to possess antiviral, anti-infective, ant proliferative and anti-inflammatory properties (see, U.S. Pat. No. 4,874,794). Longer chain fatty alcohols, e.g., tetracosanol, hexacosanol, heptacosanol, octacosanol, triacontanol, etc., are also known for their metabolism modifying properties, and tissue energizing properties.
In one or more embodiments, the fatty alcohol and/or fatty acid have a melting point of at least about 40° C.
In one or more embodiments, the fatty alcohol comprises or is selected from the group consisting of lauryl alcohol, myristyl alcohol, cetyl alcohol, stearyl alcohol, cetostearyl, arachidyl alcohol, behenyl alcohol, tetracosanol, hexacosanol, octacosanol, triacontanol, and tetratriacontanol or mixtures of any two or more thereof. In one or more embodiments, the fatty acid comprises or is selected from the group consisting of dodecanoic acid, tetradecanoic acid, hexadecanoic acid, heptadecanoic acid, octadecanoic acid, eicosanoic acid, docosanoic acid, tetracosanoic acid, hexacosanoic acid, heptacosanoic acid, octacosanoic acid, triacontanoic acid, dotriacontanoic acid, tritriacontanoic acid, tetratriacontanoic acid, and pentatriacontanoic acid or mixtures of any two or more thereof.
In one or more embodiments, the carbon chain of the fatty alcohol or the fatty acid is substituted with a hydroxyl group.
In one or more embodiments, the fatty acid is 12-hydroxy stearic acid.
Viscosity-Modifying Agent
As contemplated herein, the gel is stable and it retains its viscosity upon dispensing from a container, such as a tube, yet, it liquefies and spreads easily upon application of shear force, which can be mild, such as a simple rub. Further, while the gel is oily, it absorbs into the site of application, such as the skin or mucosa membrane, and after minutes the surface does not appear and/or feel significantly oily or greasy.
In some embodiments, formulations comprising a hydrophobic oil and viscosity-modifying agents demonstrated increased viscosity of such oil, and to which when even small amounts of a suspended tetracycline antibiotic were added, a substantial or synergistic increase in the viscosity of the composition was observed.
In one or more embodiments, the viscosity-modifying agent is a wax comprising or selected from the group consisting of a plant wax, carnauba wax, candelilla wax, ouricury wax, sugarcane wax, retamo wax, jojoba oil, an animal waxes, beeswax, a hydrogenated castor oil, a petroleum derived wax, a paraffin wax, polyethylene, and derivatives thereof.
In one or more embodiments, the viscosity-modifying agent is a combination comprising (i) at least one fatty alcohol and at least one fatty acid; or (ii) at least one fatty alcohol and at least one wax; or (iii) at least one fatty acid and at least one wax; or (iv) at least one fatty alcohol, at least one fatty acid, and at least one wax.
In one or more embodiments the at least one viscosity-modifying agent comprises or is selected from the group consisting of a fatty alcohol, a fatty acid and a wax, wherein the fatty alcohols and/or fatty acids have at least 12 carbon atoms in their carbon backbone. In certain embodiments the viscosity modifying agent is a combination of a fatty alcohol and a fatty acid and/or a wax.
In one or more embodiments, the viscosity-modifying agent is at a concentration of about 0.1% to about 22%, about 0.4 to about 18%, about 0.5% to 16%, about 0.6% to 14%, about 0.7% to 13%, about 0.8 to about 12%, about 0.9% to about 11%, about 1% to about 10%, about 10% to about 22% by weight. In one or more embodiments, the viscosity-modifying agent is a fatty alcohol having at least 12 carbon atoms in its carbon backbone. In one or more embodiments, the viscosity-modifying agent is a fatty acid having at least 12 carbon atoms in its carbon backbone.
In one or more embodiments, the viscosity-modifying agent is at a concentration of about 9.5% or about 8.5% or about 7.5% or about 6.5% or about 5.5% or about 4.5% or about 3.5% or about 2.5% or about 1.5%, about 7% or about 6% or about 5% or about 4% or about 3% or about 2% or about 1% or about 0.5%, or about 1.9%, or about 1.8%, or about 1.7%, or about 1.6%, or about 1.55 or about 1.4% or about 1.3% or about 1.2% or about 1.1%, or about 0.9% or about 0.8%, or about 0.7%, or about 0.6% or about 0.5% by weight of the composition or less than any of the aforesaid amounts.
Preferably, the fatty alcohol and/or fatty acid and/or wax are solid at ambient temperature. In certain embodiments, the fatty alcohol and/or the fatty acid and/or the wax or the mixture of them have a melting point of more than about 40° C.
Propellant
In one or more embodiments, the composition is a foamable composition, and further comprises a propellant. Any compatible propellant can be used. In one or more embodiments, the propellant is a gas at room temperature under normal pressure and which can be liquefied at increased pressure at room temperature. Examples of propellants include, without limitation, hydrocarbon propellants such as butane, propane, isobutane, dimethyl ether, fluorocarbons such as 1,1,1,2 tetrafluoroethane (Dymel 134a), and 1,1,1,2,3,3,3 heptafluoropropane (Dymel 227), and mixtures thereof. In one or more embodiments, a hydrocarbon mixture AP-70 (a mixture of about 30% w/w butane, 20% w/w isobutane and 50% w/w propane) is used.
In one or more embodiments, the composition comprises about 0.1% w/w to about 0.3% w/w of fumed (modified) silica. In one or more embodiments, the composition comprises about 1% w/w to about 4% w/w of minocycline hydrochloride or a doxycycline or a tetracycline antibiotic. In one or more embodiments, the composition comprises about 3% w/w to about 15% w/w of propellant based on the weight of the total composition. In one or more embodiments, the composition comprises about 3% w/w to about 25% w/w of propellant based on the weight of the total composition. In one or more embodiments, the composition comprises about 3% w/w to about 35% w/w of propellant based on the weight of the total composition. In one or more embodiments, the composition comprises about 5% w/w to about 30% w/w of propellant based on the weight of the total composition.
Other Ingredients
In certain embodiments, the composition is free of one or more of a petrolatum, surface active agents, protic solvents, certain polar aprotic solvents, isopropyl myristate, polyethylene gelling agents, polyethylene homopolymers, polyethylene copolymers, selenium derivatives and silicone thickening agents; and in certain embodiments, the foamable composition is substantially free of such excipients. In the context herein, the term “substantially-free” relates to a composition that contains a total of less than about 0.4% of a petrolatum, surface active agents, protic solvents, certain polar aprotic solvents, isopropyl myristate, polyethylene gelling agents, polyethylene homopolymers, polyethylene copolymers, selenium derivatives and silicone thickening agents cumulatively. Preferably, the composition comprises less than about 0.2% of two or more or all thereof by weight of petrolatum, surface active agents, protic solvents, certain polar aprotic solvents, isopropyl myristate, polyethylene gelling agents, polyethylene homopolymers, polyethylene copolymers, selenium derivatives and silicone thickening agents cumulatively or, and more preferably less than about 0.1% individually or of two or more or all thereof cumulatively.
In one or more embodiments, the composition is substantially alcohol-free, i.e., free of short chain alcohols having up to 5 carbon atoms in their carbon chain skeleton. In other embodiments, the composition comprises less than about 5% by weight final concentration of short chain alcohols, for example, less than 2% by weight, or less than 1% by weight. In certain embodiments, the composition is free or substantially free of ethanol, propanol, butanol and pentanol.
Surface Active Agents
For clarification, in the context herein whilst the term “standard surfactant” or “customary surfactant” refers herein to customary non-ionic, ionic, anionic, cationic, zwitterionic, amphoteric and amphiphilic surfactants. A fatty alcohol or a fatty acid and certain waxes are not regarded as a standard surfactant. However, in contrast, ethers or esters formed from such fatty alcohols or fatty acids can be regarded as a customary surfactant.
Surfactants of all kinds are undesirable in accordance with the present compositions and methods as (i) they were found to cause degradation of the tetracycline antibiotic; and (ii) they are generally known to possess irritation potential.
Non-limiting examples of classes of non-ionic surfactants that are undesirable according to the present invention include: (i) polyoxyethylene sorbitan esters (polysorbates), such as polysorbate 20, polysorbate 40, polysorbate 60 and polysorbate 80; (ii) sorbitan esters, such as sorbitan monolaurate and sorbitan monooleate; (iii) polyoxyethylene fatty acid esters, such as, PEG-8 stearate, PEG-20 stearate, PEG-40 stearate, PEG-100 stearate, PEG-150 distearate, PEG-8 laurate, PEG-10 laurate, PEG-12 laurate, PEG-20 laurate, PEG-8 oleate, PEG-9 oleate, PEG-10 oleate, PEG-12 oleate, PEG-15 oleate and PEG-20 oleate; (iv) PEG-fatty acid diesters; (v) polyethylene glycol (PEG) ethers of fatty alcohols; (vi) glycerol esters, such as glyceryl monostearate, glyceryl monolaurate, glyceryl monopalmitate and glyceryl monooleate; (vii) PEG-fatty acid mono- and di-ester mixtures; (viii) polyethylene glycol glycerol fatty acid esters; (ix) propylene glycol fatty acid esters; (x) mono- and diglycerides; (xi) sugar esters (mono-, di- and tri-esters of sucrose with fatty acids) and (xii) PEG alkyl phenols.
As disclosed herein, in the context of the compositions and methods provided herein, while fatty alcohols, fatty acids, and certain waxes are somewhat amphiphilic, these substances are not effective as stand-alone surfactants that can stabilize an emulsion, let alone foamable emulsion compositions, because of their very weak emulsifying capacity and further due to their weak foaming capacity on their own.
They are occasionally used in a supporting role as co-emulsifiers, i.e., in combination with a standard surfactant but are commonly used as thickeners and have successfully been used as foam adjuvants to assist customary surfactants to boost foam quality and stability. For the purposes of forming an emulsion they are usually regarded as an oil and thus have a “required” HLB value for the purpose of determining what standard surfactant might be appropriate to use with the oil phase.
Generally, surfactants are known to possess irritation potential. One way to try and reduce or minimize potential irritation and drying of the skin or mucosa due to surfactants and their repeated use, especially when formulations are to be left on the skin or mucosa rather than being washed off, is to use essentially or primarily nonionic surfactants at significant concentrations, although preferably below 5%. The identification of formulations which produce gels and quality breakable foam yet omit customary surfactants from a composition can contribute to improved tolerability of such a composition and can be an important advantage. This is especially so when a formulation is to be applied to a very sensitive target site, and particularly so on a repeated basis.
In certain embodiments, the composition is free of customary surfactants, also known as “surfactant-free,” and in certain embodiments, the foamable composition is substantially free of customary surfactants, also known as “substantially surfactant-free”.
In certain embodiments, the composition is free or substantially free of an ionic surfactant. In certain embodiments, the composition is free or substantially free of a zwitterionic surfactant. In certain embodiments, the composition is free or substantially free of a non-ionic surfactant.
Protic Solvents
Protic solvents, such as short chain alcohols, glycols and glycerin are incompatible with tetracyclines and therefore are undesirable. In certain embodiments, the composition is free or substantially free of protic solvents.
Aprotic Polar Solvents
It was discovered in PCT Publication No. WO11/039637 that certain polar aprotic solvents are incompatible with tetracycline antibiotics. Thus, aprotic polar solvents, such as dimethyl sulfoxide (DMSO), dimethylformamide (DMF), acetonitrile, acetone, methyl ethyl ketone, 1,4-Dioxane and tetrahydrofuran (THF), N-methylpyrrolidone, pyridine, piperidine, dimethylformamide, N-methyl-2-pyrrolidone and 1-methyl-2-pyrrolidinone) and azone (1-dodecylazacycloheptan-2-one) are undesirable. In certain embodiments, the composition is free or substantially free of aprotic polar solvents.
Silicone Thickening Agents
Silicone thickening agents comprise one or more polysiloxane-derived components. Such polysiloxanes are typically cross-linked and they have rubber-like characteristics, which require their solubilization in an oil, usually a silicone oil. An example of such a silicone thickening agent is ST-Elastomer 10 (Dow Corning), which is a mixture of high molecular weight dimethicone crosspolymer (12%), in cyclopentasiloxane (cyclomethicone, silicone solvent). With reference to bioavailability of an active agent in the skin following topical application, it is conceivable that cross co-polymers will create a non-permeable film which should block skin penetration and therefore, it is undesirable. Further, in the context of a breakable foam, cyclomethicone is known as a defoamer and therefore its presence in high concentrations in the breakable hydrophobic composition is undesirable. In certain embodiments, the composition is free or substantially free of silicone thickening agents other than cyclomethicone.
In one or more other specific embodiments, the drug carrier is formulated substantially free of elastomers. In one or more other specific embodiments, the drug carrier is formulated essentially free of elastomers. In one or more other specific embodiments, the drug carrier is formulated substantially free of silicones. In one or more other specific embodiments, the drug carrier is formulated essentially free of silicones. In one or more other specific embodiments, the drug carrier is formulated with less than about 30% silicones, or less than about 25% silicones, or less than about 20% silicones, or less than about 15% silicones, or less than about 10% silicones, or less than about 7.5% silicones, or less than about 5% silicones or less than about 2% silicones; or less than about 1% silicones; or less than about 0.5% silicones; or about 1% to about 5% silicones; or about 0.5% to about 3% silicones. In one or more other specific embodiments, the drug carrier does not comprise a silicone other than cyclomethicone. In one or more other embodiments, the drug carrier does not comprise one or more volatile silicones. In other embodiments, volatile silicones are present at about 3% or less.
In one or more embodiments, semi-solid hydrophobic oils are a subsidiary component in the composition, for example being present at less than about 45%, at less than about 40%, at less than about 35%, at less than about 30%, at less than about 25%, less than about 20%, less than about 15%, less than about 10%, or less than about 5% by weight of the composition. In one or more alternative embodiments, semi-solid oils are omitted.
Polyols
The identification of a “polyol,” as used herein, is an organic substance that contains at least two hydroxyl groups in its molecular structure. In one or more embodiments, the polyol is a diol (a compound that contains two hydroxyl groups in its molecular structure). Examples of diols include propylene glycol (e.g., 1,2-propylene glycol and 1,3-propylene glycol), butanediol (e.g., 1,2-butanediol, 1,3-butanediol, 2,3-butanediol and 1,4-butanediol), butanediol (e.g., 1,3-butanediol and 1,4-butenediol), butynediol, pentanediol (e.g., pentane-1,2-diol, pentane-1,3-diol, pentane-1,4-diol, pentane-1,5-diol, pentane-2,3-diol and pentane-2,4-diol), hexanediol (e.g., hexane-1,6-diol hexane-2,3-diol and hexane-2,56-diol), octanediol (e.g., 1,8-octanediol), neopentyl glycol, 2-methyl-1,3-propanediol, diethylene glycol, triethylene glycol, tetraethylene glycol, dipropylene glycol and dibutylene glycol.
In one or more embodiments, the polyol is a triol (a compound that contains three hydroxyl groups in its molecular structure), such as glycerin, butane-1,2,3-triol, butane-1,2,4-triol and hexane-1,2,6-triol.
In one or more embodiments, the polyol is a saccharide. Exemplary saccharides include, but are not limited to, monosaccharides, disaccharides, oligosaccharides, and sugar alcohols.
A monosaccharide is a simple sugar that cannot be hydrolyzed to smaller units.
The empirical formula is (CH2O)n and can range in size from trioses (n=3) to heptoses (n=7). Exemplary monosaccharide compounds are ribose, glucose, fructose, and galactose.
Disaccharides are made up of two monosaccharides joined together, such as sucrose, maltose, and/or lactose.
In one or more embodiments, the polyol is a sugar alcohol (also known as a polyol, polyhydric alcohol, or polyalcohol) or a hydrogenated form of saccharide, whose carbonyl group (aldehyde or ketone, reducing sugar) has been reduced to a primary or secondary hydroxyl group. They are commonly used for replacing sucrose in foodstuffs, often in combination with high intensity artificial sweeteners to counter the low sweetness. Some exemplary sugar alcohols, which are suitable for use according to the present disclosure are mannitol, sorbitol, xylitol, maltitol, lactitol. (Maltitol and lactitol are not completely hydrogenated compounds—they are a monosaccharide combined with a polyhydric alcohol.) Mixtures of polyols, including (1) at least one polyol comprises or selected from a diol and a triol; and (2) a saccharide are contemplated within the scope of the present disclosure.
According to some embodiments, the composition is polyol free, i.e., free of polyols.
In other embodiments, the composition is substantially free and comprises less than about 5% final concentration of polyols, preferably less than 2%, more preferably less than 1%; or about 1% to about 5% polyols; or about 0.5% to about 3% polyols. In some embodiments the composition comprises de minimis amounts of polyols. Where a formulation includes insignificant or de minimis amounts of polyols, such as less than 0.05%, the formulation is considered to be essentially free of them.
In an embodiment, the polyol is linked to a hydrophobic moiety. In the context of the present disclosure, a polyol linked to a hydrophobic moiety is still defined as a “polyol” as long as it still contains two or more free hydroxyl groups.
In an embodiment, the polyol is linked to a hydrophilic moiety. In the context of the present disclosure, a polyol linked to a hydrophilic moiety is still defined “polyol” as long as it still contains two or more free hydroxyl groups.
In one or more embodiments, the hydrophobic composition further contains an anti-infective agent, comprises or selected from the group of an antibiotic agent, an antibacterial agent, an antifungal agent, an agent that controls yeast, an antiviral agent, and an antiparasitic agent. In an embodiment, the anti-infective agent comprises a tricyclic antibiotic. Not only can combining the anti-infective effect of a hydrophobic composition, with an anti-infective agent result in a synergistic effect and consequently higher success rate of the treatment but the combination with the viscosity modifying agent achieves a formulation in which the active pharmaceutical ingredient is chemically stable and the formulation is physically stable as demonstrated herein in the Examples. Moreover, the use of hydrophobic based water-free formulation can maximize the antimicrobial and antiviral potentials of the formulations. Delivery topically can be improved by using a hydrophobic carrier with a hydrophobic API. Storage in sealed, light and airtight canisters can assist in preserving the formulations.
In one or more embodiments, the hydrophobic composition is substantially free of at least one or more of surface active agents, protic solvents, polar aprotic solvents, and silicone thickening agents.
In one or more embodiments, the hydrophobic composition is substantially free of at least one or more of surface active agents, polymeric gelling agents, polyols, short chain alcohols, and silicone thickening agents.
In one or more embodiments, the hydrophobic composition contains less than about 0.4% by weight of the composition; or less than about 0.2% by weight of the composition; or less than about 0.1% by weight of the composition of one of or a combination of two, three or all of surface active agents, protic solvents, polar aprotic solvents, and silicone thickening agents.
In one or more embodiments, any composition of the present disclosure can also contain a fragrance. In one or more embodiments, the fragrance is at a concentration of about 0.1% by weight to about 1% by weight.
In one or more embodiments, the composition comprises about 35% w/w to about 65% w/w of soybean oil. In one or more embodiments, the composition comprises about 16.5% w/w to about 30.7% w/w of coconut oil. In one or more embodiments, the composition comprises about 3.5% w/w to about 6.5% w/w of cyclomethicone. In one or more embodiments, the composition comprises about 2% w/w to about 3.7% w/w of light mineral oil.
In one or more embodiments, the composition comprises about 2.5% w/w to about 4.6% w/w of cetostearyl alcohol. In one or more embodiments, the composition comprises about 2% w/w to about 4% w/w of stearic acid. In one or more embodiments, the composition comprises about 1.8% w/w to about 3.3% w/w of myristyl alcohol. In one or more embodiments, the composition comprises about 1% w/w to about 2% w/w of stearyl alcohol. In one or more embodiments, the composition comprises about 0.5% w/w to about 1.5% w/w of behenyl alcohol. In one or more embodiments, the composition comprises about 1% w/w to about 3% w/w of hydrogenated castor oil. In one or more embodiments, the composition comprises about 1% w/w to about 3% w/w of beeswax.
In one or more embodiments, the composition comprises about 48% w/w to about 51% w/w of soybean oil. In one or more embodiments, the composition comprises about 23% w/w to about 24% w/w of coconut oil. In one or more embodiments, the composition comprises about 4% w/w to about 6% w/w of cyclomethicone. In one or more embodiments, the composition comprises about 1% w/w to about 5% w/w of light mineral oil.
In one or more embodiments, the composition comprises about 3% w/w to about 4% w/w of cetostearyl alcohol. In one or more embodiments, the composition comprises about 2% w/w to about 4% w/w of stearic acid. In one or more embodiments, the composition comprises about 2% w/w to about 3% w/w of myristyl alcohol. In one or more embodiments, the composition comprises about 1% w/w to about 2% w/w of stearyl alcohol. In one or more embodiments, the composition comprises about 0.5% w/w to about 1.5% w/w of behenyl alcohol. In one or more embodiments, the composition comprises about 1% w/w to about 3% w/w of hydrogenated castor oil. In one or more embodiments, the composition comprises about 1% w/w to about 3% w/w of beeswax.
In one or more embodiments, the composition comprises about 0.1% w/w to about 0.3% w/w of fumed (modified) silica. In one or more embodiments, the composition comprises about 1% w/w to about 4% w/w of minocycline hydrochloride or a doxycycline or a tetracycline antibiotic. In one or more embodiments, the composition comprises about 3% w/w to about 15% w/w of propellant based on the weight of the total composition.
In one or more embodiments the tetracycline composition further comprises an additional active agent selected from the group consisting of an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist, a vasoconstrictor and mixtures of any two or more thereof.
In one or more embodiments the tetracycline composition further comprises an additional active agent selected from the group consisting of ivermectine, metronidazole, azelastine, oxymetazoline, brimonidine and mixtures of any two or more thereof.
In one or more embodiments the tetracycline composition further comprises at least one of an additional active selected from an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist or a vasoconstrictor.
In one or more embodiments the tetracycline composition further comprises at least one of an additional active selected from ivermectine, metronidazole, azelastine, oxymetazoline or brimonidine.
In one or more embodiments the tetracycline composition further comprises at least one of an additional active selected from an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist or a vasoconstrictor, wherein the composition is configured for the treatment of rosacea.
In one or more embodiments the tetracycline composition further comprises at least one of an additional active selected from ivermectine, metronidazole, azelastine, oxymetazoline or brimonidine, wherein the composition is configured for the treatment of rosacea.
In one or more embodiments the composition comprises an active agent selected from the group consisting of an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist, a vasoconstrictor and mixtures of any two or more thereof.
In one or more embodiments the composition comprises an active agent selected from the group consisting of ivermectine, metronidazole, azelastine, oxymetazoline, brimonidine and mixtures of any two or more thereof.
In one or more embodiments the composition comprises at least one active agent selected from an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist and a vasoconstrictor.
In one or more embodiments the composition comprises at least one active agent selected from the group consisting of ivermectine, metronidazole, azelastine, oxymetazoline, brimonidine and mixtures of any two or more thereof.
In one or more embodiments the composition comprises at least one active agent selected from an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist and a vasoconstrictor, wherein the composition is configured for the treatment of rosacea.
In one or more embodiments the composition comprises at least one active agent selected from ivermectine, metronidazole, azelastine, oxymetazoline and brimonidine, wherein the composition is configured for the treatment of rosacea.
In one or more embodiments the composition is configured to treat a disorder selected from an inflammatory disorders, non inflammatory disorders, atopic dermatitis, acne, dermatitis, impetigo, psoriasis and rosacea.
In one or more embodiments the composition is configured to treat at least one disorder selected from an inflammatory disorder, non inflammatory disorder, atopic dermatitis, acne, dermatitis, impetigo, psoriasis and rosacea.
In one or more embodiments a method for treatment of rosacea, wherein the tetracycline composition comprises an additional agent, wherein the additional agent is selected from tetracycline antibiotic, ivermectin, azelaic acid, azelastine, isotretinoin, metronidazole, brimonidine, oxymetazoline, xylometazolin, sodium sulfacetamide and sulfur, tretinoin, a retinoid, an anti parasitic agent, an azole, an anti-histamine, α1 and α2 adrenergic receptor agonist and a vasoconstrictor.
In another aspect, the ingredients of the carrier can be selected for their compatibility with tetracycline antibiotics as described. In one or more embodiments it was not sufficient to identify single ingredients that were compatible with tetracycline antibiotics but formulations had to be found in which the ingredients in combination were also compatible with tetracycline antibiotics.
In one or embodiments, topical tetracycline treatments can be given with or followed by application of a steroid or a hyaluronic acid or a collagen or a silicone, clindamycin, or metronidazole, or erythromycin, or ivermectin, or azelaic acid, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, or a retinoid or mixtures of any two or more thereof, for example to ameliorate or reduce scarring or skin damage effects. In an embodiment treatment with topical tetracycline of dry eyes caused by ocular rosacea could be followed with liquid tears and cleaning of eyelids every day with warm water.
Therapeutic topical compositions must stay on the skin for a sufficient period of time to allow the active agent to be absorbed onto the skin, to perform its activity and to further exert a preventative effect. They should preferably not irritate the skin; and they should be perceived by the patient as pharmaceutically convenient in order to achieve sufficient patient compliance. By “pharmaceutically convenient”, it is meant that the skin look and feel to the patient is good, i.e., it must not be too watery or too greasy and it must easily be applied.
A disadvantage of known compositions having an ointment base is greasiness; these compositions are generally considered less usable in the case of facial treatment of rosacea. Another disadvantage is that many known compositions contain surfactants, which can be irritants. It is therefore an advantage of the compositions provided herein that they are breakable gels or foams; and therefore are easy to apply to the skin and also avoid skin irritation that has been associated with compositions containing surfactants
Breakable gels, which comprise liquid oils and a thickening agent, are also very convenient for use, as they liquefy on application of mild shear force such as gentle rubbing, and in turn, they readily absorb onto the skin.
Foam is advantageous in the topical treatment of skin diseases, especially in skin afflicted with rosacea, since it is light and easy to apply and collapses and spreads with a minor mechanical force like a simple rub. When dispensed, even in small quantities, drug delivery in the form of foam can also cover a larger surface area of application while also facilitating better product application in areas where conventional topical products cannot be as effective. Foam absorbs rapidly—without the need of repeated rubbing—which is helpful and important for treatment of damaged or irritated skin, sores, and lesions. As the composition is absorbed quickly, this can contribute to a positive treatment effect by the vehicle alone, or when in combination with the active agent, a higher percentage effect by the active agent may be observed.
Thermally stable foam which breaks upon application of mild shear force is extremely advantageous in the topical treatment of skin diseases. It can be applied directly onto skin or hands of the patient without collapsing. The hydrophobic compositions according to the description provided herein facilitate easy application and even distribution of the active agent, thereby improving treatment convenience. This is in contrast to a temperature sensitive foam that collapses immediately on the skin so that it must first be applied onto a cool surface and then quickly applied using fingertips onto the surface, which can impede patient compliance
The formulation packaged into an aerosol container is devoid of any contact with air, light, or any other form of contamination (e.g., moisture) as it is a completely sealed system throughout the life of the product. Thus, light and oxidation sensitive active agents can be effectively stabilized in the aerosol system.
It should be noted that hydrophobic compositions disclosed herein can be applied to the target site as a gel or a semi-solid gel or foam. In certain other embodiments, it can be applied as a liquid gel or as a collapsed foam. In one or more embodiments, the composition is thixotropic. In one or more embodiments, the gel formulation subjected to constant shear rate shows a reduction in viscosity with time. In one or more further embodiments, after the material is allowed to rest for a period of time, the viscosity increases again. In one or more embodiments, there is provided prior to adding propellant a solid or semi-solid composition or gel. In one or more embodiments, the composition or gel is a liquid. In one or more embodiments the propellant is miscible with and dilutes the composition.
Upon packaging of the foamable composition in an aerosol container and adding a propellant, a shakable and homogenous foamable composition results, which upon dispensing, forms a breakable foam with good to excellent quality. The resulting foam is pharmaceutically equivalent to the respective gel (prior to adding the propellant), since immediately upon dispensing of the foam the propellant evaporates and the composition, upon collapse, is similar or identical to that of the gel. This is an important pragmatic advantage because many drug development activities, including expensive and lengthy toxicology studies with numerous animals and clinical trials with thousands of patients can be saved by conducting such studies once for either the gel or foam presentation instead of twice (for each presentation).
In one or more embodiments, such a composition is presented as a breakable gel, which breaks down with mild mechanical force.
In one or more embodiments, the hydrophobic composition when packaged in an aerosol container to which is added a liquefied or compressed gas propellant the composition provides upon release from the container a breakable foam of at least good quality that breaks easily upon application of mechanical force.
In one or more embodiments, the composition is a foamable composition that is thermally stable at skin temperature.
In one or more embodiments, when the above composition is filled into an aerosol can or canister and pressurized with a propellant a foamable composition is produced.
In one or more embodiments, a hydrophobic foamable composition (e.g., foam or gel) provided herein comprises: a) about 60% to about 99% by weight of at least one hydrophobic solvent; b) about 1% to about 22% by weight of at least one viscosity modifying agent; and c) about 0.1% to about 18% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
In one or more embodiments, a hydrophobic foamable composition (e.g., foam or gel) provided herein comprises: a) about 60% to about 99% by weight of at least one hydrophobic solvent or carrier; b) about 1% to about 22% by weight of at least one viscosity modifying agent; c) about 0.1% to about 18% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 70% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 0.5% to about 8% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 70% to about 90% by weight of at least one hydrophobic solvent or carrier; b) about 10 to about 22% by weight of at least one viscosity modifying agent; c) about 0.5% to about 8% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 75% to about 90% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 0.5% to about 2% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 75% to about 90% by weight of at least one hydrophobic solvent or carrier; b) about 10 to about 22% by weight of at least one viscosity modifying agent; c) about 0.5% to about 2% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 88% by weight of at least one hydrophobic solvent; b) about 10 to about 22% by weight of at least one viscosity modifying agent; and c) about 2% to about 6% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 98% by weight of at least one hydrophobic solvent; b) about 1% to about 18% by weight of at least one viscosity modifying agent; and c) about 1% to about 10% of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate).
In one or more embodiments, a hydrophobic foamable composition or gel provided herein comprises: a) about 72% to about 88% by weight of at least one hydrophobic solvent or carrier; b) about 10 to about 22% by weight of at least one viscosity modifying agent; c) about 2% to about 6% by weight of a tetracycline antibiotic (e.g., minocycline HCl or doxycycline hyclate); and d) an additional active agent.
In one or more embodiments, the hydrophobic gel or foam composition for use in the method comprises: a) about 60% to about 95% by weight of at least one hydrophobic solvent or carrier; b) at least one viscosity-modifying agent selected from the group consisting of a fatty alcohol, a fatty acid, and a wax; c) a therapeutically effective amount of a tetracycline antibiotic; and d) an additional active agent.
In one or more embodiments, there is provided a hydrophobic foam or gel composition comprising: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 2.8% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; about 2% by weight of hydrogenated castor oil; h) about 2% by weight of beeswax; i) about 1.5% by weight of stearyl alcohol; j) about 1.1% by weight of behenyl alcohol; and k) about 3% by weight of minocycline.
In one or more embodiments, there is provided a hydrophobic foam or gel composition comprising: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 4.3% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; and l) about 1.5% by weight of minocycline.
In one or more embodiments, there is provided a hydrophobic foam or gel composition comprising: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 2% to about 3.7% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; h) about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k) about 0.8% to about 1.4% by weight of behenyl alcohol; and l) about 2.1% to about 4% by weight of minocycline.
In one or more embodiments, there is provided a hydrophobic foam or gel composition comprising: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 3% to about 5.6% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; h) about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k) about 0.8% to about 1.4% by weight of behenyl alcohol; and l) about 1% to about 2% by weight of minocycline.
In one or more embodiments there is provided a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 2.8% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; and l) about 3% by weight of minocycline.
In one or more embodiments there is provided a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 4.3% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; and l) about 1.5% by weight of minocycline.
In one or more embodiments there is provided a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 2% to about 3.7% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k) about 0.8% to about 1.4% by weight of behenyl alcohol; and l) about 2.1% to about 4% by weight of minocycline.
In one or more embodiments there is provided a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises: a) about 35% to about 65% by weight of soybean oil; b) about 16.5% to about 30.7% by weight of coconut oil; c) about 3.5% to about 6.5% by weight of cyclomethicone; d) about 3% to about 5.6% by weight of light mineral oil; e) about 2.5% to about 4.6% by weight of cetostearyl alcohol; f) about 2.1% to about 4% by weight of stearic acid; g) about 1.8% to about 3.3% by weight of myristyl alcohol; h) about 1.4% to about 2.6% by weight of hydrogenated castor oil; i) about 1.4% to about 2.6% by weight of beeswax; j) about 1% to about 2% by weight of stearyl alcohol; k) about 0.8% to about 1.4% by weight of behenyl alcohol; and l) about 1% to about 2% by weight of minocycline.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 57.6% to about 87.5% by weight of heavy mineral oil; b) about 3.5% to about 6.5% by weight of light mineral oil; c) about 3.2% to about 5.9% by weight of stearyl alcohol; d) about 1.75% to about 3.25% by weight of stearic acid; e) about 0.8% to about 1.4% by weight of behenyl alcohol; and f) about 3.3% to about 6.1% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 65.8% to about 86% by weight of heavy mineral oil; b) about 4% to about 6% by weight of light mineral oil; c) about 3.6% to about 5.4% by weight of stearyl alcohol; d) about 2% to about 3% by weight of stearic acid; e) about 0.9% to about 1.3% by weight of behenyl alcohol; and f) about 3.7% to about 5.6% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 74% to about 84% by weight of heavy mineral oil; b) about 4.5% to about 5.5% by weight of light mineral oil; c) about 4.1% to about 5% by weight of stearyl alcohol; d) about 2.3% to about 2.8% by weight of stearic acid; e) about 1% to about 1.2% by weight of behenyl alcohol; and f) about 4.2% to about 5.1% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 31.8% to about 59.2% by weight of light mineral oil; b) about 31.5% to about 58.5% by weight of soybean oil; c) about 2.8% to about 5.2% by weight of stearyl alcohol; d) about 0.2% to about 0.8% by weight of behenyl alcohol; and e) about 3.3% to about 6.2% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 82.24% by weight of heavy mineral oil; b) about 5% by weight of light mineral oil; c) about 4.5% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 1.1% by weight of behenyl alcohol; and f) about 4.66% by weight of minocycline hydrochloride or doxycycline hyclate. In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 62% to about 91.7% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 2.6% to about 4.8% by weight of stearyl alcohol; c) about 1.75% to about 3.25% by weight of stearic acid; d) about 0.5% to about 0.9% by weight of behenyl alcohol; e) about 0.14% to about 0.26% by weight of paraffin 51-53; and f) about 3.3% to about 6.1% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 70.6% to about 90.6% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 3% to about 4.4% by weight of stearyl alcohol; c) about 2% to about 3% by weight of stearic acid; d) about 0.56% to about 0.84% by weight of behenyl alcohol; e) about 0.16% to about 0.24% by weight of paraffin 51-53; and f) about 3.7% to about 5.6% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 79.4% to about 89.4% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 3.3% to about 4.1% by weight of stearyl alcohol; c) about 2.3% to about 2.8% by weight of stearic acid; d) about 0.63% to about 0.77% by weight of behenyl alcohol; e) about 0.18% to about 0.22% by weight of paraffin 51-53; and f) about 4.2% to about 5.6% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 63% to about 98% by weight of heavy mineral oil; b) about 0.1% to about 15% by weight of light mineral oil; c) about 0.5% to about 7% by weight of stearyl alcohol; d) about 0.5% to about 5% by weight of stearic acid; e) about 0.2% to about 2% by weight of behenyl alcohol; and f) about 1% to about 8% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 73% to about 98% by weight of heavy mineral oil, light mineral oil or combinations thereof; b) about 0.5% to about 7% by weight of stearyl alcohol; c) about 0.5% to about 5% by weight of stearic acid; d) about 0.2% to about 2% by weight of behenyl alcohol; e) about 0.1% to about 5% by weight of paraffin 51-53; and f) about 1% to about 8% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 81.94% by weight of heavy mineral oil; b) about 5% by weight of light mineral oil; c) about 4.5% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 1.1% by weight of behenyl alcohol; f) about 4.66% by weight of minocycline hydrochloride or doxycycline hyclate; and g) about 0.3% by weight of adapalene.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 82% by weight of heavy mineral oil; b) about 5% by weight of light mineral oil; c) about 4.5% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 1.1% by weight of behenyl alcohol; f) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and g) about 0.1% by weight of adapalene.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 88.6% by weight of heavy mineral oil; b) about 3.6% by weight of stearyl alcohol; c) about 2.4% by weight of stearic acid; d) about 0.5% by weight of behenyl alcohol; e) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and f) about 0.1% by weight of adapalene.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 50% by weight of soybean oil; b) about 23.6% by weight of coconut oil; c) about 5% by weight of cyclomethicone; d) about 0.7% by weight of light mineral oil; e) about 3.5% by weight of cetostearyl alcohol; f) about 3% by weight of stearic acid; g) about 2.5% by weight of myristyl alcohol; h) about 2% by weight of hydrogenated castor oil; i) about 2% by weight of beeswax; j) about 1.5% by weight of stearyl alcohol; k) about 1.1% by weight of behenyl alcohol; 1) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and m) about 0.3% by weight of adapalene.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 49% by weight of heavy mineral oil; b) about 39% by weight of light mineral oil; c) about 3.8% by weight of stearyl alcohol; d) about 2.4% by weight of stearic acid; e) about 0.7% by weight of behenyl alcohol; f) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and g) about 0.3% by weight of adapalene.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 43.4% by weight of heavy mineral oil; b) about 39% by weight of light mineral oil; c) about 4.3% by weight of stearyl alcohol; d) about 2.5% by weight of stearic acid; e) about 5% by weight of cyclomethicone; f) about 0.7% by weight of behenyl alcohol; g) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate; and h) about 0.3% by weight of adapalene.
In one or more embodiments, the hydrophobic gel or foam composition for use in the methods provided herein comprises: a) about 45.55% by weight of light mineral oil; b) about 45.05% by weight of soybean oil; c) about 4.0% by weight of stearyl alcohol; d) about 0.6% by weight of behenyl alcohol; e) about 4.8% by weight of minocycline hydrochloride or doxycycline hyclate.
In one or more embodiments, the compositions provided or described herein comprise a carrier and a propellant. In one or more embodiments, the carrier comprises or is a hydrophobic gel or foamable composition provided or described herein.
In one or more embodiments, the composition is a gel, paste, lotion, cream, soap, spray, mask, patch, powder, pomade, ointment, oil, foam or mousse. In one or more embodiments, the composition is hydrophobic. In one or more embodiments, the composition comprises hydrophobic oils and waxes. In one or more embodiments, the composition comprises fatty alcohols. In one or more embodiments, the composition comprises hydrophobic oils and fatty alcohols. In one or more embodiments, the composition comprises fatty acids. In one or more embodiments, the composition comprises hydrophobic oils and fatty acids. In one or more embodiments, the composition is surfactant free.
In one or more embodiments, the composition is substantially free of a fatty acid or of a fatty alcohol or of a wax or any two thereof. In one or more embodiments, the composition is essentially free of a fatty acid or of a fatty alcohol or of a wax or any two thereof. In one or more embodiments, the composition is free of a fatty acid or of a fatty alcohol or of a wax or any two thereof.
In one or more embodiments, the hydrophobic composition comprises a gelled oil. In one or more embodiments, the gelled oil is a gelled mineral oil. In one or more embodiments, the gelled mineral oil is a VERSAGEL®. VERSAGELs® are gelled oils or emollients that can come in different product forms including, for example, the VERSAGEL® m, VERSAGEL® p, VERSAGEL® r, and VERSAGEL® s series, and provide various viscosity grades. There are also VERSAGELs® with isohexadecane, or with isododecane, or with hydrogenated polyisobutene, or with isopropylpalmitate. In an embodiment, it is VERSAGEL® 750 m. In an embodiment, it is VERSAGEL® 200 m. In an embodiment, it is VERSAGEL® 500 m. In an embodiment, it is VERSAGEL® 1600 m. VERSAGEL® m contains a mixture of mineral oil plus one or two or more of e.g., Ethylene/Propylene/Styrene Copolymer plus e.g., Butylene/Ethylene/Styrene Copolymer plus e.g., butylated hydroxyl toluene or similar gelling agents. In one or more embodiments, the gelled oil is at a concentration of about 55% to about 85% by weight. In one or more embodiments, the gelled oil is at a concentration of about 60% to about 80% by weight. In one or more embodiments, gelled oil is at a concentration of about 65% to about 75% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 75% to about 90% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 21% to about 39% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 26% to about 34% by weight. In one or more embodiments, the hydrophobic solvent is at a concentration of about 9% to about 24% by weight. In one or more embodiments, the hydrophobic solvent comprises a petrolatum at a concentration of about 9% to about 24% by weight, or about 26% to about 34% by weight or about 21% to about 39% by weight, or about 45% by weight, or about 50% by weight or about 55% by weight or about 60% by weight.
Topical hydrophobic therapeutic breakable gel and foamable compositions comprising tetracycline, including those without surfactants, have been described, for example in U.S. application Ser. Nos. 13/499,501, 13/499,727, 13/499,475, and 13/499,709, U.S. Publication No. 2011/0281827, WO 11/039637, WO 11/039638, WO 11/138678 and WO 2011/064631, all of which are herein incorporated in their entirety by reference. More particularly, any of the active ingredients, carriers, solvents, surfactants, foam adjuvants, fatty acids, fatty alcohols, polymeric agents, penetration enhancers, preservatives, humectants, moisturizers, and other excipients, as well as the propellants and methods listed therein can be applied herein and are incorporated by reference.
Other carriers and compositions are described in: U.S. Publication No. 2005/0232869, published on Oct. 20, 2005, entitled NONSTEROIDAL IMMUNOMODULATING KIT AND COMPOSITION AND USES THEREOF; U.S. Publication No. 2005/0205086, published on Sep. 22, 2005, entitled RETINOID IMMUNOMODULATING KIT AND COMPOSITION AND USES THEREOF; U.S. Publication No. 2006/0018937, published on Jan. 26, 2006, entitled STEROID KIT AND FOAMABLE COMPOSITION AND USES THEREOF; U.S. Publication No. 2005/0271596, published on Dec. 8, 2005, entitled VASOACTIVE KIT AND COMPOSITION AND USES THEREOF; U.S. Publication No. 2006/0269485, published on Nov. 30, 2006, entitled ANTIBIOTIC KIT AND COMPOSITION AND USES THEREOF; U.S. Publication No. 2007/0292355, published on Dec. 20, 2007, entitled ANTI-INFECTION AUGMENTATION OF FOAMABLE COMPOSITIONS AND KIT AND USES THEREOF; U.S. Publication No. 2008/0317679, published on Dec. 25, 2008, entitled FOAMABLE COMPOSITIONS AND KITS COMPRISING ONE OR MORE OF A CHANNEL AGENT, A CHOLINERGIC AGENT, A NITRIC OXIDE DONOR, AND RELATED AGENTS AND THEIR USES; U.S. Publication No. 2008/0044444, published on Feb. 21, 2008, entitled DICARBOXYLIC ACID FOAMABLE VEHICLE AND PHARMACEUTICAL COMPOSITIONS THEREOF; U.S. Publication No. 2008/0069779, published on Mar. 20, 2008, entitled FOAMABLE VEHICLE AND VITAMIN AND FLAVONOID PHARMACEUTICAL COMPOSITIONS THEREOF; U.S. Publication No. 2008/0206159, published on Aug. 28, 2008, entitled COMPOSITIONS WITH MODULATING AGENTS; U.S. Publication No. 2008/0206161, published on Aug. 28, 2008, entitled QUIESCENT FOAMABLE COMPOSITIONS, STEROIDS, KITS AND USES THEREOF; U.S. Publication No. 2008/0260655, published on Oct. 23, 2008, entitled SUBSTANTIALLY NON-AQUEOUS FOAMABLE PETROLATUM BASED PHARMACEUTICAL AND COSMETIC COMPOSITIONS AND THEIR USES; U.S. Publication No. 2011/0268665, published on Nov. 3, 2011, entitled OIL-BASED FOAMABLE CARRIERS AND FORMULATIONS; U.S. Publication No. 2012/0087872, published on Apr. 12, 2012, entitled FOAMABLE VEHICLES AND PHARMACEUTICAL COMPOSITIONS COMPRISING APROTIC POLAR SOLVENTS AND USES THEREOF; U.S. Publication No. 2012/0213709, published on Aug. 23, 2012, entitled NON SURFACTANT HYDRO-ALCOHOLIC FOAMABLE COMPOSITIONS, BREAKABLE FOAMS AND THEIR USES; U.S. Publication No. 2012/0213710, published on Aug. 23, 2012, entitled SURFACE ACTIVE AGENT NON POLYMERIC AGENT HYDRO-ALCOHOLIC FOAMABLE COMPOSITIONS, BREAKABLE FOAMS AND THEIR USES; U.S. Publication No. 2013/0064777, published on Mar. 14, 2013, entitled SURFACTANT-FREE WATER-FREE FOAMABLE COMPOSITIONS, BREAKABLE FOAMS AND GELS AND THEIR USES; U.S. Publication No. 2013/0053353, published on Feb. 28, 2013, entitled COMPOSITIONS, GELS AND FOAMS WITH RHEOLOGY MODULATORS AND USES THEREOF; U.S. Publication No. 2011/0281827, published on Nov. 17, 2011, entitled COMPOSITIONS, GELS AND FOAMS WITH RHEOLOGY MODULATORS AND USES THEREOF; U.S. Publication No. 2013/0028850, published on Jan. 31, 2013, entitled TOPICAL TETRACYCLINE COMPOSITIONS; U.S. Publication No. 2013/0011342, published on Jan. 10, 2013, entitled SURFACTANT-FREE, WATER-FREE, FOAMABLE COMPOSITIONS AND BREAKABLE FOAMS AND THEIR USES; U.S. Publication No. 2013/0225536, published on Aug. 29, 2013, entitled COMPOSITIONS FOR THE IMPROVED TREATMENT OF ACNE AND RELATED DISORDERS; U.S. Publication No. 2014/0121188, published on May 1, 2014, entitled METHODS FOR ACCELERATED RETURN OF SKIN INTEGRITY AND FOR THE TREATMENT OF IMPETIGO; U.S. Publication No. 2015/0164922, published on Jun. 18, 2015, entitled USE OF TETRACYCLINE COMPOSITIONS FOR WOUND TREATMENT AND SKIN RESTORATION, all of which are incorporated herein by reference in their entirety. More particularly, any of the active ingredients, carriers, solvents, surfactants, foam adjuvants, polymeric agents, penetration enhancers, preservatives, humectants, moisturizers, and other excipients, as well as the propellants and methods listed therein can be applied herein and are incorporated by reference.
Manufacture
The present disclosure also provides a method of manufacturing a gel or foam composition having a tetracycline antibiotic, the method comprising: providing a composition having one or more hydrophobic solvents; heating said composition; adding fatty alcohols, fatty acids and waxes; cooling said composition; optionally adding SiO2; and adding a tetracycline antibiotic.
The compositions provided herein are manufactured according to the methods described in the art and as described in Example 1. Gels are usually packaged in a tube but can also be packaged in any other convenient delivery form including for example, bottles with a pump mechanism or canisters such as bag in can devices where propellant is separate from the gel. Foam formulations are usually packed in a container with an outlet valve e.g., aerosol canister. Possible containers and valves are likewise described in the literature as known by those skilled in the art.
According to another aspect, both the minocycline and the foamable compositions containing minocycline can be manufactured under current Good Manufacturing Principles (cGMP) conditions. The foamable composition was provided in aluminum aerosol canisters mounted with valve and actuator. Each canister was filled with 25 g of product and 3 g of propellant. Upon actuation of the canister an aliquot of quality foam was released.
Administration
In one or more embodiments there is provided a method of administering a tetracycline foam composition to a target area such as skin of a patient comprising releasing foam, applying it to the area, and collapsing the foam. In one or embodiments, the foam is applied by spreading. In the course of spreading mechanical shear can cause the foam to collapse. In one or more embodiments, the collapsed foam is not washed off. In one or more embodiments it is absorbed onto the area of skin. In one or more embodiments it avoids skin irritation or an ointment sensation.
In one or more embodiments, there is provided a method of applying a tetracycline gel composition to an area of skin of a patient comprising releasing a gel, applying it to the area, and collapsing or liquefying the gel. In one or more embodiments, the collapsed or liquefied gel is not washed off. In one or more embodiments, the collapsed or liquefied gel is readily absorbed and does not leave an ointment sensation.
In one or more embodiments, there is provided a method for reducing the number of rosacea lesions, by applying topically an effective amount of a tetracycline gel, liquid gel or foam to an afflicted area of a patient in need. In one or more embodiments, the method involves applying a gel, liquid, gel or foam formulation topically to a target surface in need of treatment and breaking the gel or foam over the target site. In one or more embodiments the gel or foam is collapsed and spread by application of a mechanical force, which can be mild or slight such as a simple rub and the active agent is then absorbed. In one or more embodiments the foam or gel is absorbed.
In one or more embodiments, a gel or a liquid gel or a collapsed foam is absorbed within 240 seconds, or within 200 seconds, or within 180 seconds, or within 150 seconds, within 120 seconds, or within 100 seconds, or within 80 seconds, or within 60 seconds, or within 50 seconds, or within 40 seconds, or within 30 seconds, or within 20 seconds, or within 10 seconds, or within 5 seconds, or within 2 seconds or less. The term “absorbed” means that the composition enters onto and into an area of skin, mucosa or eye, often forming a thin coating on the surface.
In one or more embodiments, the method uses an additional step of pre cleaning and drying the lesions and surrounding area before applying the gel, liquid gel or foam.
In one or more embodiments, the method uses a sterile applicator or prior to the steps of administering and/or collapsing and/or spreading, the hands of the person spreading are sterilized in order to avoid cross contamination.
In one or more other embodiments, the method comprises an additional step of applying an active agent to the lesions and surrounding area after the gel, liquid gel or foam has been absorbed, wherein the active agent is a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or doxycycline, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin. In some embodiments, the active agent, such as, for example, a hyaluronic acid, a retinoid, BPO, salicylic acid, an alpha hydroxy acid, azelaic acid, a nicotinamide, a keratolytic agent, clindamycin, metronidazole, erythromycin, ivermectin, brimonidine, sodium sulfacetamide and sulfur, tretinoin, or mixtures of two or more thereof, is applied once daily at least 1 or 2 or 3 or 4 or 5 or 6 or 7 or 8 or 9 or 10 or 11 or 12 hours after the tetracycline antibiotic formulation has been absorbed. In further embodiments, the active agent, such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is applied after the third day. In yet additional embodiments, the active agent, such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is applied during the maintenance stage. In an alternative embodiment, the active agent, such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is replaced with or supplemented by a steroid.
In an alternative embodiment, the active agent, such as, for example, a hyaluronic acid or a retinoid or BPO or salicylic acid, or an alpha hydroxy acid, or azelaic acid, or nicotinamide, or a keratolytic agent or steroid, or clindamycin, or metronidazole, or erythromycin, or ivermectin, or brimonidine, or sodium sulfacetamide and sulfur, or tretinoin, is replaced with or supplemented by an antibiotic. In an embodiment, the antibiotic, which is in addition to one or more tetracycline antibiotics, is selected from the group consisting of mupirocin, fusidic acid, a penicillin or penicillin derivative, augmentin, an anti staphylococcal penicillin, amoxicillin/clavulanate, a cephalosporin, cephalexin, a macrolide, erythromycin, clindamycin, trimethoprim-sulfamethoxazole penicillin, retapamulin, and mixtures of any two or more thereof. In an embodiment the antibiotic is applied topically. In another embodiment it is applied orally or by injection or by infusion. In another embodiment more than one antibiotic is applied. For example, one is applied topically and another is given orally. The latter can be appropriate for example where there is a systemic as well as a topical bacterial infection.
Frequency
In one or more embodiments there is provided a regime or regimen for treating a patient having one or more of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, which comprises applying to the afflicted area on a regular basis a hydrophobic gel or foam composition, said composition comprising a therapeutically effective amount of a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once a day, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, twice a day, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, alternate-day or intermittently, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, gradual reduction to a lower maintenance dose, which can be increased if further outbreaks occur, to a surface having rosacea a composition comprising a tetracycline antibiotic. In one or more embodiments, a maintenance dose can be applied topically, daily, alternate daily, twice weekly or weekly for a month, two months, quarterly, six months or indefinitely. A maintenance dose can include about 0.9%, or about 0.8%, or about 0.7%, or about 0.6%, or about 0.5%, or about 0.4%, or about 0.3%, or about 0.2%, or about 0.1%, or about 0.09%, or about 0.08%, or about 0.07%, or about 0.06%, or about 0.05% by weight of a tetracycline antibiotic. In one or more embodiments, the maintenance dose can be commenced after four weeks of treatment, or after five weeks of treatment, or after six weeks of treatment, or after seven weeks of treatment, or after eight weeks of treatment, or after nine weeks of treatment, or after ten weeks of treatment, or after eleven weeks of treatment, or after twelve weeks of treatment, or after thirteen weeks of treatment, or after fourteen weeks of treatment, or after fifteen weeks of treatment, or after sixteen weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily for at least four weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily up to four weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily for twelve weeks or less than twelve weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily for four weeks or less than four weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily for three weeks or less than three weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic. In one or more embodiments, there is provided a method for treating rosacea, including administering topically, once daily for two weeks or less than two weeks, to a surface having rosacea a composition comprising a tetracycline antibiotic
In one or more embodiments, there is provided a method for treating a condition involving inflammation of the skin or mucosa (the disorder), including administering topically, once daily for six weeks or less than six weeks, to a surface having the disorder a gel of foam composition comprising a tetracycline antibiotic.
Application can be, hourly, every twelve hours (e.g., twice daily), once daily, alternate-day or intermittent, according to the condition of the patient. For reasons of compliance, less frequent applications, where possible, are preferable, e.g., daily single applications. In certain cases, where prolonged or long term treatment is required, an initial dose is provided followed by a gradual reduction to a lower maintenance dose, which can be increased if further outbreaks occur.
In one or more embodiments there is provided a hydrophobic gel or foam composition comprising a tetracycline antibiotic for use in treating one or more of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, including skin infections, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for twelve weeks or less than twelve weeks of treatment.
In one or more embodiments there is provided a hydrophobic gel or foam composition comprising a minocycline antibiotic for use in treating a disorder selected from the group consisting of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic gel or foam composition is administered topically at least alternate days or at least once daily for at least six weeks to the skin, wherein the minocycline antibiotic is the sole active ingredient present in the composition. In one or more embodiments there is provided a hydrophobic foam composition or gel comprising a tetracycline antibiotic for use in retarding, arresting, or reversing the progression of one or more of rosacea, and/or rosacea related symptoms, and/or a tetracycline antibiotic responsive rosacea related disorder, and/or a tetracycline antibiotic responsive skin disorder, and/or skin disorder caused by a bacteria, and/or a tetracycline antibiotic responsive disorder, and/or a sebaceous gland disorder, wherein the hydrophobic foam composition or gel is applied topically to the skin at least alternate days or at least once a day for at least six weeks.
In one or more embodiments, the method uses a once daily dosage regime for twelve weeks or less than twelve weeks. In one or more embodiments the twelve-week dosage regime is followed by a once daily maintenance dose for one, two, three, four or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime for six weeks or less than six weeks. In one or more embodiments the six-week dosage regime is followed by a once daily maintenance dose for one, two, three, four or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime of for six weeks or less than six weeks followed by a once weekly maintenance dose for one, two, three, four, five, six, seven, eight, nine, ten, eleven or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime of for three weeks or less than three weeks followed by a once weekly maintenance dose for one, two, three, four, five, six, seven, eight, nine, ten, eleven or more weeks according to the condition and response of the patient. In one or more embodiments, the method uses a once daily dosage regime of for two weeks followed by a daily maintenance dose for one, two, three or more weeks according to the condition and response of the patient. In one or more embodiments the method uses a once daily dosage regime of for twelve weeks wherein the treatment is every alternate week.
Combination Therapy
Several disorders involve a combination of more than one etiological factor; and therefore, the use of more than one active agent is advantageous. For example, psoriasis involves excessive cell proliferation and inadequate cell differentiation as well as inflammation. Atopic dermatitis involves keratinocyte growth abnormality, skin dryness and inflammation. Bacterial, fungal and viral infections involve pathogen colonization at the affected site and inflammation. Hence, in many cases, the inclusion of a combination of active agents in the pharmaceutical composition can be desirable. Thus, in one or more embodiments, the composition includes at least two active agents, in a therapeutically effective concentration.
In one or more embodiments, a combination of any two or more of an antibacterial, an anti-inflammatory, an antifungal, and an antiviral agent is contemplated.
In one or more embodiments, a tetracycline antibiotic is the sole active ingredient present in the composition. In one or more embodiments, a minocycline is the sole active ingredient present in the composition. In one or more embodiments, a doxycycline is the sole active ingredient present in the composition. In one or more embodiments minocycline and doxycycline are used in combination.
In one or more embodiments, a combination of any two or more of a minocycline, retinoids, and benzoyl peroxide is contemplated
In one or more embodiments, a combination of any two or more of a tetracycline, retinoids, and benzoyl peroxide is contemplated.
In one or more embodiments, a combination of any two or more of benzoyl peroxide, antibiotics, retinoids, antiseborrheic medications, anti-androgen medications, hormonal treatments, salicylic acid, alpha hydroxy acid, azelaic acid, nicotinamide, and a keratolytic agent is contemplated. In one or more embodiments the tetracycline is combined with adapalene.
Disease Indications
The diseases or disorders treated by the composition provided herein include, for example, rosacea. Rosacea may begin as redness on the central face across the cheeks, nose, or forehead, but can also less commonly affect the neck, chest, ears, and scalp. In some cases, the symptoms can include additional signs, such as, for example, semi-permanent redness, dilation of superficial blood vessels on the face, red domed papules (small bumps) and pustules, red gritty eyes, burning and stinging sensations, and in some advanced cases, a red lobulated nose (rhinophyma), may develop.
Rosacea may affect all ages. Based on the location, rosacea generally has four subtypes, three affecting the skin and the fourth affecting the eyes (ocular rosacea).
There are several subtypes of rosacea including, for example, but not limited to, erythematotelangiectatic rosacea, papulopustular rosacea, phymatous rosacea, ocular rosacea, pyoderma faciale (also known as rosacea fulminans), rosacea conglobata, phymatous rosacea.
For the purposes of this specification, rosacea can include any of the known subtypes, known to one of skilled in the art.
In one embodiment, rosacea is associated with the elevated levels of cathelicidins. In another embodiment, rosacea is associated with the elevated levels of a stratum corneum tryptic enzyme (SCTE). In yet another embodiment, rosacea is associated with parasitic mite, intestinal bacteria, or a combination thereof.
A rosacea related disorder is any disorder which can occur in parallel with rosacea or be a contributing factor to the outbreak of rosacea or can resemble rosacea. Perioral dermatitis is an erythematous, papulopustular facial eruption that resembles rosacea and/or acne but typically starts around the nose. Rosacea (acne rosacea) is a chronic inflammatory disorder characterized by facial flushing, telangiectasias, erythema, papules, pustules, and in severe cases, rhinophyma.
Rosacea related symptoms include, papules, pustules, blackheads, whiteheads or milia, nodules and cysts.
Pyoderma faciale (also called rosacea fulminans) occurs suddenly on the midface of young women. It can be analogous to acne fulminans. The eruption consists of erythematous plaques and pustules.
A number of other skin disorders and diseases can be treated with the composition provided herein such as rosacea, wounds, burns, inflammatory skin dermatoses superficial infections, including skin infections, such as impetigo, antibiotic responsive dermatoses and sebaceous gland disorders. Minocycline can also have skin regenerating and healing properties responsible for restoration of skin integrity. The combination of minocycline together with a hydrophobic solvent and a fatty alcohol or fatty acid can afford a beneficial effect in conditions characterized, for example, by infection and/or inflammation.
Additionally, provided is a method of maintenance therapy, to prevent rosacea recurrence or reduce the severity of the rosacea recurrence, applied to a patient in need which comprises applying to the skin on a regular basis (as defined above) a hydrophobic gel or foam composition comprising a therapeutically effective amount of a tetracycline antibiotic
Chemical Stability, Pharmacokinetics, Safety, and Efficacy
Chemical Stability
The stability of foamable composition containing minocycline was monitored at 5° C., 25° C., 40° C., and 50° C. during and after the clinical trials and satisfactory stability results were obtained (see, e.g., Example 4).
Pharmacokinetics
In some embodiments, the systemic exposure of a Minocycline and/or Doxycylcine foam as disclosed herein (e.g., 1%, 1.5%, 3%, or 4% minocycline or doxycycline by weight) is equal to or lower than that of an orally administered tetracycline (e.g., minocycline or doxycylcine), as evaluated in a PK Study. In some embodiments, the terms “systemic exposure,” “systemic absorption,” and “absorption” are used interchangeably.
The systemic exposure of an oral tetracycline or tetracycline foam (e.g., Minocycline or Doxycylcine foam) may be determined based on a pharmacokinetic (PK) study as described in the Examples, e.g., Examples 5, 6 and 9. For example, the minocycline or doxycycline foam may be administered to a subject once or multiple times and blood samples are obtained at various time points to determine the level of minocycline or doxycycline in plasma. Various pharmacokinetic parameters can be calculated and used as an indicator of the systemic exposure, and compared to a control or base line (e.g., the level prior to treatment or the level after administration of an oral tetracycline). One or more of the following pharmacokinetic parameters may be used as an indicator of the systemic exposure: Cmax (maximum plasma concentration), tmax (time of maximum measured plasma concentration), AUC0-inf (area under the plasma concentration vs time curve [AUC] from time 0 to infinity), AUC0-tldc (AUC from time 0 to the time of last detectable concentration), t1/2 (terminal phase half-life), C24 (minocycline concentration 24 hours after topical application of minocycline foam 4%), AUC0-tau (AUC during the 24-hour dosing interval for topical minocycline foam), and bioavailability. At the end of the PK study, the safety of the foam may be evaluated by surveying any treatment-emergent adverse events (TEAEs).
In some embodiments, a Cmax value is used as an indicator of the systemic exposure of a tetracycline (e.g., minocycline) foam described herein. In some embodiments, an AUC0-inf value is used as an indicator of the systemic exposure of a tetracycline foam described herein. In some embodiments, an AUC0-tldc value is used as an indicator of the systemic exposure of a tetracycline foam described herein. In some embodiments, an AUC0-tau value is used as an indicator of the systemic exposure of a tetracycline foam described herein. In some embodiments, PK measurements are taken at one or more time points following administration of a tetracycline foam desired herein, e.g., 1 hour, 6 hours, 12 hours, 18 hours, 24 hours, 36 hours, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more days after administration, or any time period in between. In some embodiments, a tetracycline foam described herein is administered about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or more days after a single dose of an oral tetracycline and PK measurements are taken at one or more time points following administration of the tetracycline foam, e.g., about 1 hour, 6 hours, 12 hours, 18 hours, 24 hours, 36 hours, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, or more days after administration, or any time period in between.
In some embodiments, a 4% Doxycycline foam pharmacokinetic (PK) study similar to that of a 4% Minocycline foam PK Study is undertaken. In some embodiments, a 1% or 2% or 3% Doxycycline foam PK Study is similar to that of a 1% or 2% or 3%, respectively, Minocycline foam PK Study is undertaken. In some embodiments, a 1% or 2% or 3% Minocycline foam PK Study is similar to that of a 4%, Minocycline foam PK Study. In some embodiments the systemic exposure in a 1% or 2% or 3% Minocycline foam PK Study is lower than that of a 4% Minocycline foam PK Study. In some embodiments, a 1% or 2% or 3% Doxycycline foam PK Study is similar to that of a 4%, Doxycycline foam PK Study. In some embodiments the systemic exposure in a 1% or 2% or 3% Doxycycline foam PK Study is lower than that of a 4% Doxycycline foam PK Study.
In some embodiments, absorption of a foam described herein (e.g., a foam comprising 1-4% tetracycline antibiotic such as doxycycline or minocycline foam or combinations thereof) is low as determined by a PK Study in comparison to a comparable dose of an orally administered tetracycline. In some embodiments, the Cmax determined on Day 1 after the first dose is about 0.2 ng/mL to about 5 ng/mL. For example, is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL.
In some embodiments, absorption of a foam described herein (e.g., a foam comprising 1-4% tetracycline antibiotic such as doxycycline or minocycline or combinations thereof) is low as determined by a PK study in comparison to a comparable dose of an orally administered tetracycline. In some embodiments, a Cmax is identified on Day 16 after the administration of the foam once a day for sixteen consecutive days and is about 0.2 ng/mL to about 12 ng/mL. For example, is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL, or about 5.2 ng/mL, or about 5.4 ng/mL, or about 5.6 ng/mL, or about 5.8 ng/mL, or about 6 ng/mL, or about 6.2 ng/mL, or about 6.4 ng/mL, or about 6.6 ng/mL, or about 6.8 ng/mL, or about 7 ng/mL, or about 7.2 ng/mL, or about 7.4 ng/mL, or about 7.6 ng/mL, or about 7.8 ng/mL, or about 8 ng/mL, or about 8.2 ng/mL, or about 8.4 ng/mL, or about 8.6 ng/mL, or about 8.8 ng/mL, or about 9 ng/mL, or about 9.2 ng/mL, or about 9.4 ng/mL, or about 9.6 ng/mL, or about 9.8 ng/mL, or about 10 ng/mL, or about 10.2 ng/mL, or about 10.4 ng/mL, or about 10.6 ng/mL, or about 10.8 ng/mL, or about 11 ng/mL, or about 11.2 ng/mL, or about 11.4 ng/mL, or about 11.6 ng/mL, or about 11.8 ng/mL, or about 12 ng/mL.
In some embodiments, absorption of a foam described herein (e.g., a foam comprising 1-4% tetracycline antibiotic such as doxycycline or minocycline or combinations thereof) is low as determined by a PK Study in comparison to a comparable dose of an orally administered tetracycline. In some embodiments, absorption is determined by a PK Study, and a Cmax is determined on Day 12 after the administration of the foam once a day for twelve consecutive days and is about 0.2 ng/mL to about 5 ng/mL. For example, is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL.
In some embodiments, absorption of a foam described herein (e.g., a foam comprising 1-4% tetracycline antibiotic such as doxycycline or minocycline or combinations thereof) is low as determined by a PK Study in comparison to a comparable dose of an orally administered tetracycline. In some embodiments, absorption is determined by a PK Study, and a Cmax is determined on Day 21 after the administration of the foam once a day for 21 consecutive days and is about 0.2 ng/mL to about 5 ng/mL. For example, is about 0.2 ng/mL, or about 0.4 ng/mL, or about 0.6 ng/mL, or about 0.8 ng/mL, or about 1 ng/mL, or about 1.1 ng/mL, or about 1.2 ng/mL, or about 1.4 ng/mL, or about 1.6 ng/mL, or about 1.8 ng/mL, or about 2 ng/mL, or about 2.2 ng/mL, or about 2.4 ng/mL, or about 2.6 ng/mL, or about 2.8 ng/mL, or about 3 ng/mL, or about 3.2 ng/mL, or about 3.4 ng/mL, or about 3.6 ng/mL, or about 3.8 ng/mL, or about 4 ng/mL, or about 4.2 ng/mL, or about 4.4 ng/mL, or about 4.8 ng/mL, or about 5 ng/mL. In some embodiments, the foam is FMX-101, 4%.
In some embodiments, absorption of a 4% tetracycline antibiotic, e.g., minocycline or doxycycline foam as determined by a PK Study is about 800 times to about 50 times lower than that of a comparable dose of an oral doxycycline. In some embodiments, the 4% tetracycline antibiotic is a composition described herein. In some embodiments, the 4% tetracycline antibiotic is FMX-101, 4%, described herein. In some embodiments, a 4% tetracycline antibiotic foam described herein has about 800 times to about 50 times lower Cmax and/or AUC values as compared to the Cmax and/or AUC values of a comparable dose of an oral doxycycline (e.g., an approved dose of Oracea® such as 40 mg). For example, it may be about 800 times lower, or about 750 times lower, or about 700 times lower, or about 650 times lower, or about 600 times lower, or about 550 times lower, or about 500 times lower, or about 450 times lower, or about 400 times lower, or about 350 times lower, or about 300 times lower, or about 250 times lower, or about 200 times lower, or about 150 times lower, or about 100 times lower, or about 50 times lower, than the Cmax and AUC for the approved dose of the oral extended release doxycycline (Oracea® 40 mg).
In some embodiments, absorption of a 4% tetracycline antibiotic, e.g., minocycline or doxycycline foam as determined by a PK Study is about 800 times to about 50 times lower than that of a comparable dose of an oral minocycline. In some embodiments, the 4% tetracycline antibiotic is a composition described herein. In some embodiments, the 4% tetracycline antibiotic is FMX-101, 4%, described herein. In some embodiments, a 4% tetracycline antibiotic foam described herein has about 800 times to about 25 times lower Cmax and/or AUC values as compared to the Cmax and/or AUC values of a comparable dose of an oral minocycline (e.g., an approved dose of SOLODYN® such as 1 mg/kg). For example, it may be about 800 times lower, or about 750 times lower, or about 700 times lower, or about 650 times lower, or about 600 times lower, or about 550 times lower, or about 500 times lower, or about 450 times lower, or about 400 times lower, or about 350 times lower, or about 300 times lower, or about 250 times lower, or about 200 times lower, or about 150 times lower, or about 100 times lower, or about 50 times lower, or about 25 times lower, than the Cmax and AUC for the approved dose of the oral minocycline (SOLODYN® 1 mg/kg).
In some embodiments, absorption of a 4% foam tetracycline antibiotic, e.g., minocycline or doxycycline foam as determined by a PK Study is about 850 times to about 50 times lower than that of the approved dose of an oral minocycline. In some embodiments, a 4% tetracycline antibiotic foam described herein has about 850 times to about 50 times lower Cmax and/or AUC values as compared to the Cmax and/or AUC values of the approved dose of an oral minocycline (e.g., Solodyn® 1 mg/kg). For example, is about 850 times lower, or about 800 times lower, or about 750 times lower, or about 730 times lower or about 700 times lower, or about 650 times lower, or about 600 times lower, or about 550 times lower, or about 500 times lower, or about 450 times lower, or about 400 times lower, or about 350 times lower, or about 300 times lower, or about 250 times lower, or about 200 times lower, or about 150 times lower, or about 100 times lower, or about 50 times lower, than the Cmax and AUC for the approved dose of the oral extended release minocycline (Solodyn® 1 mg/kg).
In some embodiments, a foam described herein (e.g., a foam comprising 1-4% tetracycline antibiotic such as doxycycline or minocycline or combinations thereof, e.g., FMX-101, 4%) achieves good efficacy comparable to or better than an approved dose of an oral tetracycline (e.g., Oracea® 40 mg or Solodyn® 1 mg/kg) while avoiding systemic adverse events. In some embodiments, the foam exhibits fewer adverse events than a comparable dose of oral tetracycline. In some embodiments, the treatment of rosecea using a composition disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events or serious adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline. In some embodiments, the treatment of acne using a composition disclosed herein is superior to a comparable dose of an oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline (e.g., Oracea® 40 mg or Solodyn® 1 mg/kg). In some embodiments, the treatment of acne vulgaris using a composition disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
In some embodiments, the treatment of rosecea or acne using FMX-101 or FMX-103, as disclosed herein, is superior to a comparable dose of an oral tetracycline while exhibiting fewer adverse events or serious adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline. In some embodiments, the treatment of acne using FMX-101, 4% disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline. In some embodiments, the treatment of acne vulgaris using FMX-101, 4% disclosed herein is superior to a comparable dose of the oral tetracycline while exhibiting fewer adverse events and/or exhibiting lower systemic exposure as compared to the oral tetracycline.
Safety
In various embodiments, clinical studies confirm that the once-daily treatment regimen with minocycline foam (1.5% or 3%) is safe even for a prolonged treatment period. During twelve weeks of treatment, no drug-related systemic adverse events or serious adverse events were reported, and the observed occurrences of telangiectasia, burning/stinging, or flushing/blushing resolved before the end of the study. Thus, administration of the minocycline topical foam is efficient, safe, and well-tolerated.
The gel, liquid gel, and foamable compositions disclosed herein meet a long-felt need for a shorter treatment regimen having an earlier onset and a higher percentage reduction in lesions, while maintaining high levels of safety and efficacy.
Thus, provided herein in various embodiments, are methods for treating rosacea or acne, including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein an enhanced safety and good tolerability of the topical foamable minocycline compositions is demonstrated.
In vitro skin penetration studies (see, e.g., PCT Publication No. WO 11/039637) show that topical administration of minocycline brings appreciable amounts of the drug to its target site of action (the skin), thus possibly avoiding the undesirable high systemic exposure and the negative consequences of the oral dosage route.
The topical compositions provided herein avoid, reduce, minimize or do not cause adverse effects, which are attributed to oral tetracycline antibiotics. Photosensitivity, for example, is a known side effect of oral minocycline. It is manifested as an exaggerated sunburn reaction on areas of the body exposed to direct sunlight or ultraviolet light, resulting in muddy brown skin discoloration. Use of oral minocycline over an extended period of time can also lead to skin pigmentation, e.g., manifested as blue-gray skin and blue-gray staining in areas of scarring and inflammation associated with rosacea. Tooth staining potential of oral minocycline in adult populations has also been acknowledged in recent literature. In contrast, no tooth staining was reported during the period of topical application of 1% or 4% minocycline foam or on follow-up to the study. In one or more embodiments provided herein, the topical minocycline composition avoids tooth staining.
Topical delivery also means that lower doses can be used again, contributing to the elimination or reduction of unwanted side effects. Accordingly, the foamable compositions provided herein can be beneficial for the treatment of a range of skin conditions, including rosacea, wounds, burns, inflammation, superficial infections, antibiotic responsive diseases or dermatoses, skin diseases caused by bacteria, and other skin infections, such as impetigo. Likewise, the foamable compositions provided herein can be beneficial in mucosal infections and in eye infections and inflammatory conditions.
Surprisingly, it has been previously demonstrated by Applicants in U.S. Pat. No. 8,871,184, that minimal to no skin pigmentation was noticed following rubbing of 4% minocycline foam onto the skin when observed after about 30 seconds. It has been surprisingly further discovered that no photosensitivity or skin discoloration was noticed following application of 1% or 4% minocycline foam onto the skin once daily for 12 weeks. Similarly, drug-related pigmentation was not observed.
Thus, the compositions provided herein can have protective properties in the case of UVB-induced sun damage or any other condition associated with sunlight or other light (e.g., laser) exposure. The formulations and methods of treatment provided herein can potentially reduce skin photo damage and photo aging, and more generally reduce oxidative stress and inflammation in skin pathologies which are known to be accompanied by apoptotic cell death.
It is surprisingly shown that therapeutic effects can be achieved with low concentrations of minocycline, such as 1.5%. Thus, it is possible to use lower concentrations of minocycline, thereby reducing toxicity and increasing safety. In some embodiments, the absolute mean lesion count change for the 1.5% and 3% minocycline compositions is about the same. In some embodiments, the percent reduction of lesion count for the 1.5% and 3% minocycline compositions is about the same. In some embodiments, the reduction of IGA score for the 1.5% and 3% minocycline compositions is about the same.
It is now surprisingly shown that topically administering a foam formulation having minocycline at 1.5% or 3% significantly decreases the number of lesions (absolute lesion count and percent change lesion count), and also significantly improves investigator's global assessment (IGA) results (reducing the IGA score by 2 grades and reaching a “clear or “almost clear” rating) in comparison to the vehicle. Further, the difference between the 1.5% and 3% formulations, with respect to decrease in the number of lesions and improvement of IGA score, is not statistically significant. The efficacy of FMX103 in the treatment of rosacea is surprising, as rosacea is a syndrome of undetermined etiology characterized by both vascular and papulopustular components, i.e., it is a chronic inflammatory condition of facial skin affecting both the blood vessels and pilosebaceous unit. Moreover, the observed dose independence of effectiveness in treatment of rosacea is surprising and unexpected in light of dose dependency observed with acne, where 4% minocycline is more effective than 1% minocycline. Also, the effectiveness in the treatment of rosacea is also surprising in view of the lack of bacterial involvement in rosacea, as is the case of acne and impetigo.
It is shown herein that a topically administered foam formulation containing minocycline at 1.5% or 3% is safe and well tolerated. No drug related serious adverse events or systemic adverse events were reported in a clinical study of the formulations. There were only a few treatment-related dermal reactions reported (none in the 1.5% group, three patients in the 3% group and four patients in the vehicle group). These reactions resolved before the end of the study. A total of four subjects discontinued the study due to an adverse event (three patients in the 3% group and one in the vehicle group).
In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline antibiotic is present in the gel or foam composition in an amount effective to treat rosacea in a subject, which is safe and well-tolerated. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein substantially no treatment-related dermal reactions are observed. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein no systemic drug-related side effects and no serious adverse reactions are observed. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline antibiotic is present in the gel or foam composition at a concentration of 1.5% or 3% to treat rosacea. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline is minocycline hydrochloride.
In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic wherein the 1.5% and 3% concentrations are equally effective in reducing the number of papules and pustules, as compared to the placebo vehicle. In another embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 1.5% dose is more effective the 3% dose in reducing the number of papules and pustules, as compared to the placebo vehicle. In another embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 3% dose is more effective the 1.5% dose in reducing the number of papules and pustules, as compared to the placebo vehicle. In one or more embodiments the reduction in the papules and pustules is statistically significant as compared to placebo. In one or more embodiments the reduction in the papules and pustules is statistically significant as compared to placebo. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline is minocycline hydrochloride.
In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic wherein the 1.5% and 3% concentrations are equally effective in reducing IGA score by two levels, as compared to the placebo vehicle. In another embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 1.5% dose is more effective that the 3% dose in reducing the IGA score by two levels, as compared to the placebo vehicle. In another embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 3% dose is more effective the 1.5% dose in reducing the IGA score by two levels, as compared to the placebo vehicle. In one or more embodiments the reduction in IGA score by two levels is statistically significant as compared to placebo. In one or more embodiments the reduction in IGA score by two levels results in clear or almost clear compared to baseline. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein said tetracycline is minocycline hydrochloride.
In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein said tetracycline antibiotic is present in said gel or foam composition in an amount effective to treat moderate-to-severe papulopustular rosacea (IGA score 3-4). In an embodiment, more than half of the tetracycline-treated subjects have severe rosacea at baseline. In an embodiment, there is no statistical significant difference between treatment groups with regard to IGA severity at baseline.
Erythema is redness of the skin or mucous membranes, caused by hyperemia (increased blood flow) in superficial capillaries. It occurs with any skin injury. There are different types of erythema for example erythema nodosum and erythema multiforme. Visible redness of the skin is observed in patients with medium and severe rosacea. In one or more embodiments, there is provided a method of treatment for reducing skin redness in a subject having a disorder in which one of the etiological factors is skin redness comprising applying a topical composition to an area of skin with the disorder, wherein the topical composition comprises a tetracycline antibiotic, for example, minocycline or doxycycline, at the concentration of, for example, about 1.5% to 3%. In some embodiments, the redness is moderate redness. In some embodiments, the redness is severe redness. In some embodiments, the redness is a symptom of Rosacea. In some embodiments, it is a symptom of an infection. In some embodiments, it is a symptom of a bacterial infection. In some embodiments, it is a symptom of a fungal infection. In some embodiments, it is a symptom of a viral infection. In some embodiments, it is a symptom of an allergic reaction. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic wherein the 1.5% and 3% concentrations are equally effective in reducing the severity of erythema, as compared to the placebo vehicle. In another embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 1.5% dose is more effective than the 3% dose in reducing in reducing the severity of erythema, as compared to the placebo vehicle. In another embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the 3% dose is more effective than the 1.5% dose in reducing the severity of erythema, as compared to the placebo vehicle. In one or more embodiments, the reduction of erythema severity is statistically significant as compared to placebo. In some embodiments, a foam composition described herein is sufficient to reduce the severity of skin redness or erythema by at least 30%, 35%, 40%, 45%, 50%, 55%, 60%, 65%, 70%, 75%, 80%, or more as compared to the severity of skin redness or erythema before the treatment and/or as compared to a vehicle or oral doxycycline treatment. In an embodiment, provided is a hydrophobic gel or foam composition comprising: a tetracycline antibiotic, wherein the tetracycline is minocycline hydrochloride.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein essentially no skin irritation such as telangiectasia, burning/stinging, or flushing/blushing, or essentially no adverse events, or no serious adverse events are observed. In one or more embodiments, good tolerability was demonstrated with relatively few reports of skin irritation, such as telangiectasis, burning or stinging, flushing or blushing.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein an enhanced efficacy of the topical foamable minocycline compositions is demonstrated.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein better efficacy of the topical foamable minocycline compositions is demonstrated as compared to other topical treatments.
Oral doxycycline administration may cause common side effects, including upset stomach, nausea, diarrhea and mild headache.
Since doxycycline hyclate is a larger molecule compared to minocycline HCl, in some embodiments it can have a reduced penetration and hence the maximum plasma concentrations can be less than those obtained for minocycline HCl.
In some embodiments, doxycycline hyclate penetrates better than minocycline HCl and hence the maximum plasma concentrations can be more than those obtained for minocycline HCl.
In some embodiments, doxycycline hyclate penetration is similar to that of minocycline HCl and hence the maximum plasma concentrations can be similar to those obtained for minocycline HCl.
Efficacy
In one or more embodiments, there is provided an effective method for treating rosacea, as set out herein, to patients with more than twenty inflammatory lesions on the face (papules and/or pustules) and up to 2 nodules, with more than twelve but not more than a nineteen inflammatory lesions on the face and no nodules, and receiving a score of at least Moderate on the Investigator's Global Assessment Scale.
In one or more embodiments, provided herein is an effective method for treating acne using a composition described herein. In one or more embodiments, provided herein is an effective method for treating acne vulgaris using a composition described herein. In some embodiments, the composition is FMX-101. In some embodiments, the composition is FMX-101, 4%.
In one or more embodiments, the methods for treating rosacea, as set out herein, are able to deliver effective amounts of a tetracycline antibiotic into the skin or mucosal surface.
In one or more embodiments, the methods for treating rosacea, as set out herein, are able to deliver effective amounts of a tetracycline antibiotic into and around the hair follicle or the hair follicle area.
In one or more embodiments, the methods for treating rosacea, as set out herein, are able to deliver effective amounts of a tetracycline antibiotic into or around the sebaceous gland or the sebaceous gland area or the pilosebaceous unit.
In one or more embodiments, the methods for treating rosacea, as set out herein, are able to deliver effective amounts of a minocycline, wherein the minocycline composition targets the sebaceous gland or the sebaceous gland area or the pilosebaceous unit.
In one or more embodiments, there is provided a method for treating rosacea, as set out herein, wherein the hydrophobic gel or foam composition targets the hair follicle or the hair follicle area.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein a reduction in the number of lesions is observed after twelve weeks or less than twelve weeks of treatment compared to baseline. In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having the disorder, a composition comprising a tetracycline antibiotic, wherein an improvement in the skin condition is observed after twelve weeks or less than twelve weeks of treatment and wherein an improvement is considered as restoration of visible, normal cutaneous topographic features, indicating the return of skin integrity. In an embodiment the improvement is after two weeks after three weeks, or after four weeks, or after five weeks, or after six weeks or after seven weeks, or after eight weeks, or after nine weeks, or after ten weeks, or after eleven weeks, or after twelve weeks.
In one or more embodiments there is provided a hydrophobic gel or foam composition comprising a therapeutically effective amount of tetracycline antibiotic for use in treating rosacea in a human subject comprising topically administering the composition at least alternate days or at least once daily, wherein a decrease in the number of rosacea papule and pustules is observed after at least twelve weeks of treatment. In an embodiment the decrease in the number of rosacea papule and pustules is after two weeks, after three weeks, or after four weeks, or after five weeks, or after six weeks or after seven weeks, or after eight weeks, or after nine weeks, or after ten weeks, or after eleven weeks, or after twelve weeks.
In one or more embodiments, there is provided a hydrophobic gel or foam composition comprising a therapeutically effective amount of tetracycline antibiotic for use in treating rosacea in a human subject comprising topically administering the composition at least alternate days or at least once daily, wherein a decrease the total number of rosacea lesions is observed after at least three weeks of treatment or after at least two weeks of treatment.
In one or more embodiments, there is provided a hydrophobic gel or foam composition comprising a therapeutically effective amount of tetracycline antibiotic for use in treating rosacea in a human subject comprising topically administering the composition at least alternate days or at least once daily, wherein a decrease the number of inflammatory rosacea lesions is observed after at least three weeks of treatment or after at least two weeks of treatment.
In one or more embodiments, the human subject is 60 or less than 60 years old, is 50 or less than 50 years old, is 40 or less than 40 years old, is 30 or less than 30 years old, or is 25 or less than 25 years old, or is 22 or is less than 22 years old, or is 20 or less than 20 years old, or is 18 or less than 18 years old, or 15 or is less than 15 years old, or is between 8 to 25 years old or is between 9 to 22 years old. In an embodiment the subject is a female. In an embodiment the female is under the age of forty-six and optionally is a pregnant or breastfeeding female. In an embodiment the subject is a male. In an embodiment the subject is a teenager. In another embodiment the subject is a child.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically to a surface having rosacea a composition comprising a tetracycline antibiotic, wherein after twelve weeks of treatment, at least about 40% of the treated rosacea lesions disappear (in other words, a 40% decrease in the number of lesions) so that no further antimicrobial therapy is necessary. In some embodiments, at least about 50%, at least about 60%, at least about 70% or at least about 80% of the treated rosacea lesions disappear. In one or more embodiments, at least about 90% of the treated rosacea lesions disappear.
In other embodiments, a decrease of at least about 60% in the number of rosacea lesions is observed after twelve weeks or less than twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically to a surface having rosacea a composition comprising a tetracycline antibiotic, wherein after twelve weeks or less than twelve weeks of treatment, at least about 45% of the treated rosacea lesions disappear (in other words, a 45% decrease in the number of lesions) so that no further antimicrobial therapy is necessary. In some embodiments, at least about 50%, at least about 60%, at least about 70% or at least about 80% of the treated rosacea lesions disappear after six week or less than six weeks of treatment. In one or more embodiments, at least about 90% of the treated rosacea lesions disappear after twelve week or less than twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared is at least about 30%, at least about 40%, or at least about 50% or at least about 60%, or at least about 70% or at least about 75% or at least about 80% after twelve weeks or less than twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared is at least about 50%, or at least about 60%, or at least about 70%, or at least about 80% after four weeks after the end of the treatment.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared at the end of treatment is statistically significant compared to baseline in both 1.5% and 3% dose groups.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared at the end of treatment compared to baseline is statistically significant in both 1.5% and 3% dose groups when compared to placebo.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number lesions that disappeared at the end of treatment compared to baseline is statistically significant in the 3% dose group when compared to placebo.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the baseline severity of rosacea is at least moderate to severe, as judged by the number of rosaceas and investigator's global severity assessment (IGA).
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the mean number of rosacea papule and pustules at baseline is at least about 30-34 or at least about 34-35.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the number of papule and pustules is at least 20 papule and pustules. In other embodiments there is at least one papule and pustules, or at least 5, or at least 10 or at least 15 papule and pustules and in further embodiments there are at least 25, or at least 30 or at least 40 or at least 50 papule and pustules.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the rosacea is low to moderate rosacea. In other embodiments the composition can be applied as aforesaid as a method of protecting the skin, for example, by preventing microbial infection or rosacea
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the IGA score as assessed by the investigator at baseline is between 3-4, indicating moderate to severe rosacea at baseline. In other embodiments the composition can be applied to mild rosacea and in still further embodiments it can be applied to very severe rosacea.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the daily application of topical minocycline foam (3% and 1.5%) on facial skin with moderate to severe rosacea results in a significant improvement of the disease, for example, as indicated by the primary and secondary endpoints.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein there is a clinically and statistically significant reduction in a lesion count, after twelve weeks of treatment in the subjects receiving minocycline foam compared to Placebo.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a clinically and statistically significant improvement in the investigator global assessment of rosacea severity is observed after 12 treatment weeks in the subjects receiving minocycline foam compared to Placebo.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a clinically and statistically significant improvement in the investigator global assessment of rosacea severity is observed after 12 treatment weeks in the subjects receiving minocycline foam compared to Placebo, and wherein a clinically significant improvement in the investigator global assessment of rosacea severity comprises improvement by at least two levels.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect of the minocycline foam is dose dependent, and the effect of 3% minocycline foam is generally greater than 1.5% minocycline foam.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect of the minocycline foam is dose dependent, and the effect 1.5% minocycline foam is generally greater than 3% minocycline foam.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect of the minocycline foam on rosacea is dose independent (in a surprising and unexpected contrast to dose dependency observed with acne), and the effect of 1.5% minocycline foam is similar to 3% minocycline foam.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, a clinically and statistically significant reduction in the number of inflammatory lesions can be seen after 12 weeks of treatment in subjects receiving the 1.5-3%, or about 1.5% or about 3% minocycline foam, as compared to Placebo and/or compared to baseline prior to treatment.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, more than a 60% reduction in inflammatory lesion counts can be seen following twelve weeks of treatment in subjects receiving the 1.5-3% minocycline foam compared to Placebo.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, the percent of subjects who had a decrease of more than 40%, 50%, 60%, or 70% in the inflammatory lesions count was statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 6 treatment weeks and onward.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, the percent of subjects who had a decrease of more than 50% or 60%, in the inflammatory lesions count was statistically significantly higher in the 1.5-3% treatment group compared to Placebo only at twelve treatment weeks.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment at 12 weeks, more than 20% of the subjects have “clear” or “almost clear” skin in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 50% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 60% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 70% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 50% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 60% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment at 12 weeks, the number of the subjects having improvement is statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 8 treatment weeks and onward.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment at 12 weeks, the number of the subjects having improvement by of at least 2 grades is statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 12 treatment weeks and onward.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein improvement of at least 2 grades in the investigator's global assessment score is observed in at least 20% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein improvement of at least 2 grades in the investigator's global assessment score is in at least 15% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein improvement of at least 3 grades in the investigator's global assessment score is in at least 10% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
In one or more embodiments, provided is a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to secondary endpoint relating to rosacea improvement, assessment by the investigator after twelve weeks of treatment indicates improvement in at least 70% of subjects receiving the 1.5-3% minocycline foam, wherein this is statistically significant compared to the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to secondary endpoint relating to rosacea improvement assessment by the investigator after 12 treatment weeks indicates improvement in at least 60% of subjects in subjects receiving the 1.5-3% minocycline foam and wherein this is statistically significant compared to the Placebo group.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein at least half the subjects receiving the 1.5-3% minocycline foam evaluated their rosacea as ‘much better than prior to study’ and wherein this is statistically significant when compared to the Placebo group.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein the effect was most notably shown on severe rosacea subjects receiving the 1.5-3% minocycline foam.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions and that disappeared at the end of treatment compared to baseline is higher than placebo in both 1.5% and 3% dose groups.
In one or more embodiments, the placebo formulation has a beneficial effect. In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a placebo composition being a vehicle composition described herein for the delivery of a tetracycline that does not comprise a tetracycline antibiotic, wherein a percent of number of inflammatory lesions that disappeared at the end of treatment compared to baseline is higher than on a surface having rosacea that is untreated. In one embodiment placebo is statistically better than no treatment.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 3% dose group at the end of treatment is significantly statistically higher than that of the 1.5% dose group.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 1.5% dose group at the end of treatment is significantly statistically higher than that of the 3% dose group.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 3% dose group at the end of treatment is significantly statistically higher than that of placebo.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in the 1.5% dose group at the end of treatment is significantly statistically higher than that of placebo.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein a percent of total number of inflammatory lesions that disappeared in both 1.5% and 3% dose groups at the end of treatment is statistically significant when compared to placebo.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein at least about 30%, or at least about 40%, or at least about 50%, or at least about 55%, or at least about 58%, or at least about 60%, or at least about 62%, or at least about 70%, or at least about 75% of total number of inflammatory lesions disappear after twelve weeks after the end of the treatment (F/U). In one or more embodiments these changes at F/U are statistically significant compared to baseline in both 1.5% and 3% dose groups. In one or more embodiments these changes at F/U are statistically significant compared to placebo in both 1.5% and 3% dose groups. In one or more embodiments the number of inflammatory lesions at F/U is the same or similar compared to end of treatment (“EOT”) in both 1.5% and 3% dose groups. In one or more embodiments the number of inflammatory lesions at F/U increases compared to EOT. In one or more embodiments there is the number of inflammatory lesions at F/U decreases compared to EOT.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, more than 15% of the subjects have “clear” or “almost clear” skin in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, more than 10% of the subjects have “clear” or “almost clear” skin in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 70% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” or “moderate” rosacea has decreased at least 50% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 70% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein, according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having “severe” rosacea has decreased at least 80% in subjects receiving the 1.5-3% minocycline foam and wherein this change is statistically significant compared to subjects in the Placebo group.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having improvement by of at least 2 grades is statistically significantly higher in the 1.5-3% treatment group compared to Placebo after 12 treatment weeks and onward.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having improvement by of at least 2 grades is in at least 10% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein according to the investigator's global assessment of erythema at 12 weeks, the number of the subjects having improvement by of at least 2 grades is in at least 15% of the subjects receiving 1.5-3% minocycline foam and wherein this is statistically more frequent than in subjects receiving Placebo.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in no adverse event.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein at treating said rosacea in said subject results in more than about 30% reduction in lesions, relative to placebo, after about two to twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results about 30-60% reduction in lesions, relative to placebo, after about two to twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea, in said subject, with said composition having 1.5% or 3% minocycline, results in about 33% reduction in the incidence of erythema, relative to 7% reduction in placebo, after two weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea, in said subject, with said composition having 1.5% or 3% minocycline, results in a significant reduction in papules and pustules, relative to placebo, after about two to twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in reduction in the number of lesions ranging from about 10 to about 30, relative to a baseline.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in reduction in the number of lesions of about 10, 15, 20, or 30, relative to a baseline.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea, in said subject, with said composition having 1.5% or 3% minocycline, results reduction in the number of lesions of about 19-22, relative to placebo, after about two to twelve weeks of treatment.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in lesion count ranging from about 10 to about 20.
In one or more embodiments, there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic, wherein treating said rosacea in said subject results in lesion count of about 10, 13, 14, 15, 18, or 20.
As with other therapeutic regimens, patient compliance is essential in the effectiveness of prescribed antibiotics. With poor compliance, therapeutic goals are less likely to be achieved, resulting in poorer patient outcomes. Poor compliance is associated with deteriorating skin condition, the need for additional consultations, the emergence of bacterial resistance, extra drugs, additional expenses on cosmeticians and increases in direct and indirect costs of healthcare management.
In general, patients are more compliant with simple and shorter dosing regimens. Both the dosage schedule and the patient's daily routine should be considered when prescribing antibiotics. Topical agents can also be more attractive than oral therapy because they reduce the potential for systemic side effects, typically nausea and diarrhea, which are commonly associated with many systemic antibiotics. They can also help provide a reduction in cross contamination by providing a barrier with antibiotic over the infected area.
In one or more embodiments there is provided a method for treating rosacea, including administering topically, to a surface having rosacea, a composition comprising a tetracycline antibiotic administered at least alternate days or once daily which has a high or improved patient compliance compared with existing treatments.
In one or more embodiments, one or more of the methods provided herein for treating or alleviating rosacea or acne can also be used for treating a disorder including one or more of the following: rosacea related or associated disorder, rosacea-like symptoms, rosacea related symptoms, a tetracycline antibiotic responsive rosacea related disorder, skin disorder caused by a bacteria, and a tetracycline antibiotic responsive sebaceous gland disease.
A multi-center, randomized, double blind, placebo controlled, parallel group, dose finding Phase II clinical study conducted in patients afflicted with papulopustular rosacea is reported in Example 3 below. The study is designed to assess the efficacy, safety and tolerability of foamable composition comprising minocycline at one of two different concentrations (strengths): a lower concentration of minocycline of 1.5% by weight of the formulation and higher concentration of minocycline 3% by weight of the formulation, in comparison with a placebo. The concentrations of minocycline in the composition were selected according to formulation integrity and stability considerations.
In some embodiments similar Phase II clinical studies for additional tetracycline antibiotic formulations such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 are undertaken.
In some embodiments, Phase II studies in rosacea for other tetracycline antibiotic formulations (such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058) provide similar results to those seen for the FMX103 formulation.
In some embodiments, a Phase II clinical study indicates that other tetracycline antibiotic formulations (such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058) can treat moderate-to-severe rosacea.
In some embodiments, a Phase II clinical study for another tetracycline antibiotic formulation such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 indicates that such a formulation can reduce papules and pustules in rosacea patients.
In some embodiments, DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 can help patients having rosacea. In some embodiments, DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 are safe and well tolerated in subjects who have rosacea. In some embodiments there are no drug-related systemic side effects. DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 are in some embodiments superior to a vehicle in preventing rosacea. In some embodiments, compliance with DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 is high. In some embodiments application with one or more of topical DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 can improve patients' quality of life
In some embodiments, other tetracycline antibiotic formulations (such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058) are safe and well-tolerated in the subjects having rosacea. In some embodiments no systemic drug-related adverse events are recorded.
The compositions and methods provided herein are described with reference to the following examples, in a non-limiting manner. The following examples exemplify the foamable compositions and methods described herein. The examples are for the purposes of illustration only and are not intended to be limiting. Many variations will suggest themselves and are within the full intended scope.
EXAMPLES
In one or more embodiments, the amounts in the examples should be read with the prefix “about.”
As used herein, the term “NM” means not measured.
Exemplary Ingredients Suitable for the Production of Foamable Compositions
Exemplary Ingredients Suitable for the Production of Foamable Compositions
Chemical Name Function Commercial Name Supplier
Beeswax white Foam Beeswax white STRAHL & PITSCH, Inc.
Stabilizer
Behenyl alcohol Foam Lanette 22 BASF
Stabilizer
Cetostearyl alcohol Foam Kolliwax ® CSA 50 BASF
Stabilizer
Coconut oil Carrier Coconut oil Henry Lamotte
Cyclomethicone-5 Carrier ST-cyclomethicone-5 Dow
Hydrogenated castor oil Foam Kolliwax ® HCO BASF
Stabilizer
Light Mineral Oil Carrier Pionier 2076P Hansen & Rosenthal
Light Mineral Oil 15 Columbia Petro Chem
PVT.LTD.
Minocycline HCl Active agent Minocycline HCl Hovione
Myristyl alcohol Foam Kolliwax ® MA BASF
Stabilizer
Propane/Isobutane/Butane Propellant AP-70 Aeropress
(55:18:27)
Soybean oil Carrier Soybean oil Henry Lamotte
Stearic acid Foam Kolliwax ® S Fine BASF
Stabilizer
Stearyl Alcohol Foam Kolliwax ® SA BASF
Stabilizer
Example 1 General Manufacturing Procedures for a Gel or a Foam
The following procedures were used to produce gel or foam samples, in which only the steps relevant to each formulation were performed depending on the type and nature of ingredients used.
Step 1: Hydrophobic solvents such as mineral oils are mixed at room temperature. Others solvents such as silicones, if present, are added at room temperature under mixing until formulation homogeneity is obtained.
Step 2: The formulation is warmed to 70-80° C. or 80-90° C. and solid compounds such as fatty alcohols, fatty acids and waxes are added and mixed until complete dissolution.
Step 3: The formulation is cooled down to 30-40° C. Silica dioxide (SiO2), if present, and active agents such as tetracyclines are added under mixing until formulation homogeneity is obtained.
Step 4: For gel compositions, the formulation is packaged in suitable containers. For foamable compositions, the formulation is packaged in aerosol canisters which are crimped with a valve, pressurized with propellant and equipped with an actuator suitable for foam dispensing. Optionally, a metered dosage unit can is utilized to achieve delivery of desirable and/or repeatable measured doses of foam.
Step 5: For foamable compositions, pressurizing is carried out using a hydrocarbon gas or gas mixture. Canisters are filled and then warmed for 30 seconds in a warm bath at 50° C. and well shaken immediately thereafter.
Step 6: The canisters or containers are labeled.
Example 2 General Manufacturing Procedures for a Gel or a Foam
The following procedures are used to produce gel or foam samples, in which only the steps relevant to each formulation are performed depending on the type and nature of ingredients used.
Step 1: Hydrophobic solvents and solid compounds such as fatty alcohols, fatty acids and waxes are mixed and heated to a temperature sufficient to achieve complete dissolution.
Step 2: The formulation is cooled down to 35-40° C., sensitive components such as silica dioxide (SiO2), if present, cyclomethicone and sensitive active agents such as tetracyclines are added under mixing until formulation homogeneity is obtained.
Step 3: The formulation is cooled down to room temperature.
Step 4: For gel compositions, the formulation is packaged in suitable containers. For foamable compositions, the formulation is packaged in aerosol canisters which are crimped with a valve, pressurized with propellant and equipped with an actuator suitable for foam dispensing.
Step 5: For foamable compositions, pressurizing is carried out using a hydrocarbon gas or gas mixture. The canisters or containers are labeled.
In one or more embodiments, part of the hydrophobic solvents are added during the cooling process of the formulation (step 2).
In one or more embodiments, one of more of the formulation mixing steps can be done with or without vacuum and in the presence or absence of air, or an inert gas. For example, in an embodiment, one or more steps are done under vacuum, in the absence of air under an inert gas.
In one or more embodiments, likewise packaging in canisters can be done with or without vacuum and in the presence or absence of air, or an inert gas.
Example 3 Clinical Study Phase II (1.5% or 3% Minocycline Foam)
STUDY TITLE: A Randomized, Multicenter, Double-blind, Vehicle-controlled Study to Evaluate the Safety and Efficacy of two Different Doses of a Topical Minocycline Foam Compared to Vehicle in the Treatment of Papulopustular Rosacea.
STUDY SYNOPSIS: In this example, topical administration of tetracycline (for example minocycline) is studied and the safety and efficacy of two different doses of minocycline foam compared to vehicle foam are evaluated in the treatment of moderate-to-severe papulopustular rosacea.
OBJECTIVES: The primary objective of the study is to evaluate the efficacy of two different doses of FMX-103 minocycline foam compared to vehicle foam in subjects with moderate-to-severe papulopustular rosacea. The secondary objectives of the study are (a) to determine the relationship between the concentration(s) of topical minocycline foam and treatment response, (b) sensitivity analyses of efficacy of two different doses of FMX-103 minocycline foam compared to vehicle foam in subjects with moderate-to-severe papulopustular rosacea, and (c) to evaluate the safety and tolerability of topical minocycline foam applied daily for 12 weeks.
STUDY MEDICATION: Table 2. FMX103 Minocycline (3% and 1.5%) and placebo foamable compositions without silicone dioxide (SiO2), as described in Table 4.
Dosage:
Dosage form description Foam containing minocycline, 1.5% and 3%
Vehicle foam (0%)
Package description Canisters, each containing 35 gr of the clinical trial supply foam either:
vehicle; FMX-103 1.5% minocycline foam; or FMX-103 3%
minocycline foam
Daily dose Once daily application of a small amount of study drug (a diameter of
a one cent coin/~1.5 cm) onto fingertip to cover the entire face.
Estimated maximum is 0.5 gr of the foam containing 7.5 (1.5%) or 15
(3%) mg of minocycline
Cumulative maximal dose 630 mg (1.5%) or 1,260 mg (3%)
for dosing (12 weeks)
Dispensing 1 canister containing 35 g of the FMX-103 minocycline formulation,
1.5% or 3% or vehicle dispensed at Visit 2 (Baseline), Visit 4, Visit 5,
and optionally at other visits if required.
INDICATION: Papulopustular rosacea.
DESIGN: A randomized, multicenter, double-blind, vehicle-controlled study assessing 232 male or non-pregnant female subjects aged greater than or equal to 18 years with a clinical diagnosis of moderate-to-severe papulopustular rosacea for at least 6 months, with at least 12 inflammatory facial lesions (i.e., papules/pustules).
PATIENTS: The study enrolls 210 male or female patients (approximately 70 subjects per arm: control, 1.5% and 3% minocycline) at approximately 14-16 sites in Germany who meet all of the inclusion criteria (Table 1) and none of the exclusion criteria (Table 2).
TABLE 1
Inclusion criteria
≥18 years-of-age with moderate-to-severe rosacea (as per IGA) on
the proposed facial treatment. area consisting at least 12 facial papules
or pustules excluding papule and pustule s involving the eyes and
scalp.
Diagnosed with rosacea for at least 6 months prior to screening
Women of child-bearing potential must have a negative serum pregnancy
test and agree to use a highly effective method of contraception.
Willing to minimize external factors that might trigger rosacea flare-ups
(e.g., spicy foods, thermally hot foods and drinks, hot environments,
prolonged sun exposure and extensive alcoholic beverages).
Subjects who use make-up must have used the same brands/types of
make-up for a minimum period of 14 days prior to study entry and must
agree to use the same make-up, brand/type, or frequency of use,
throughout the study.
Completed and signed an appropriately administered Informed Consent
Form (ICF) prior to any study-related procedures.
TABLE 2
Exclusion Criteria
Pregnancy or breastfeeding.
Any skin condition on the face that would interfere with the diagnosis or assessment of rosacea.
Moderate or severe rhinophyma, dense telangiectasis (score 3, severe), or plaque-like facial edema.
An active nodule on the face >5 mm in diameter.
Excessive facial hair.
History of hypersensitivity or allergy to minocycline, any other tetracycline or any other component of
the formulation.
Severe irritation grade for erythema, dryness, scaling, pruritus, stinging/burning, and edema.
Rosacea conglobata or fulminans, corticosteroid-induced rosacea or isolated pustulosis of the chin, facial
erythrosis of known origin other than rosacea (e.g., known carcinoid syndrome).
Ocular rosacea (e.g., conjunctivitis, blepharitis, or keratitis)
Use within 6 months prior to baseline of oral retinoids.
Woman of childbearing potential who has used a highly effective method of contraception for less than 3
months prior to baseline.
Use within 1 month prior to baseline of topical retinoids to the face or systemic antibiotics known to have
an impact on the severity of papulopustular rosacea or systemic corticosteroids or methoxyflurane.
Use within 2 weeks prior to baseline of: topical corticosteroids, or topical antibiotics in the head and neck
area; topical medications for rosacea.
Wax epilation of the face within 2 weeks prior to Baseline and during the study.
use of sauna during the 2 weeks prior to Baseline and during the study.
Bacterial folliculitis.
Alcohol or drug abuse
Excessive or prolonged exposure to weather extremes
Any other clinically significant condition or situation that may interfere with the study evaluations
Uncontrolled/instable relevant arterial hypertension
Participating in another investigational drug study within 30 days prior to Baseline
Previously enrolled in the FX2015-10 study
Prior laser therapy to the facial area within 3 months prior to Baseline.
Prior cosmetic procedures which may affect the efficacy and safety profile within 2 weeks prior to
Baseline
Clinical Study Design
Eligible subjects are assigned to 1 of 3 treatments (vehicle, 1.5% and 3% minocycline) at 1:1:1 ratio according to the randomization schedule. Subjects are to apply the study drug topically once daily for 12 weeks as directed. Subjects are advised to use the study drug at approximately the same times each day in the evening. Both the investigator and subject are blinded to the study drug identity.
Subjects return for visits at Weeks, 2, 4, 8, 12, and 16. Efficacy evaluations (Investigator's Global Assessment [IGA] score and inflammatory papule and pustule counts) are performed at Weeks, 2, 4, 8, and 12 during the study, with an additional safety follow-up visit at weel 16. Other assessments are performed as described in the Study Flow Chart (Table 3).
The dosing regimen is the same for all treatment groups. All patients receive at Screening Visit a guideline with detailed instructions on how to apply the medication correctly. In addition, patients are asked at each study visit about their medication application to assure a correct use of study medication.
Study drug kits are dispensed at Visit 2 (Baseline), Visit 4 (Week 4), Visit 5 (Week 8), and optionally at other/unscheduled visits if required for continuous dosing.
A small amount of study drug (a diameter of a one-cent coin) should be expressed from the canister onto the thoroughly washed finger tips and then applied topically as a thin layer over all parts of the face.
TABLE 3
Study Flow Chart
Assessment
Final main Follow
Screening Baselinea Visits protocol Visitb up visitf
Visit
3 4 5 6 7
Week
2 4 8 12 16
1 2 −3/+5 d −3/+5 d −3/+5 d −3/+5 d −3/+5 d
Informed Consent X
Demographic Data X
Assign subject identification X
Medical/Surgical/Medication X
History
Inclusion/Exclusion criteria X X
Physical Exam, height, weightc X X
Blood Pressure/heart rated X X X X X X
Blood and urine samples for X X
clinical laboratory tests
Urine pregnancy test (females X X X X
only)
Serum pregnancy test (females X X
only)
Papule and pustule Count X X X X X X
Investigator's Global X X X X X X
Assessment
Modified IGA X X X X X X
RosaQoL assessment X X
Randomization X
Photography of face X X X X X
Concomitant Medication X X X X X X
Adverse Events X X X X X X
Local safety assessments X X X X X
Assessments of erythema X X X X X X
Perform drug accountability Xe X X X
Collect empty drug canister(s) X X X
Dispense Study Drug X X X
Handout of Patient's X
Guidelines
Schedule/Confirm Next Visit X X X X X X
aBaseline must occur within 6 weeks of screening. Blood results must not show clinically significant abnormalities.
bIf a subject prematurely withdraws from the study, all evaluations described under Visit 6/Week 12 must be performed.
cHeight to be measured only at Baseline.
dMeasure blood pressure and heart rate after the subject has been sitting for at least 5 minutes at rest.
eThe canister of study drug has to be weighed and given back to the patient.
fIf patient is unable to come to the visit there should be at least a follow-up phone call.
Efficacy
The efficacy assessments include the lesion counts and IGA at Baseline and Weeks 2, 4, 8, and 12. The primary efficacy endpoint is the absolute change in inflammatory lesion count at Week 12 compared to Baseline. Lesion count is performed by the investigator. The number of papules, pustules and nodules are counted and the numbers recorded. The facial area lesion counts are made for the forehead, left and right cheeks, nose and chin at each visit.
Secondary Efficacy Assessments are performed by the investigator who assesses the global severity of rosacea at Screening, Baseline, Weeks 2, 4, 8, and 12 by grading the severity on a 0-4 scale, with score 0 corresponding to “clear”, and score 1 corresponding to “almost clear”. Severity Assessment of other Rosacea Criteria will include grading Erythema of the face on a 0-4 scale, patient self-grading of Rosacea quality of life index (RosaQoL), and evaluation of standardized photographs.
Patient Demographics:
Patient demographics can include the individuals with diverse group, gender, height, weight and body mass index (BMI).
Statistical Methodology
All statistical analyses are performed using SAS software version 9.3 (or higher). Descriptive statistics for qualitative variables (e.g., race) include the number and percentage of subjects with the qualitative response. For quantitative variables (e.g., age), descriptive statistics include the number of subjects with non-missing data, mean, standard deviation, median, and minimum and maximum values. All hypothesis testing is conducted using two-sided tests with α=0.05 level of significance. Each minocycline dose group are compared to vehicle, however, the primary comparison is the minocycline 3% treatment group versus the vehicle treatment group.
The Intent-to-treat (ITT) analysis population includes all randomized subjects. The ITT population is primary for all efficacy analyses.
The Per-protocol (PP) population includes all subjects in the ITT population who had at least one post-Baseline assessment, and are without any other major deviations from the protocol that can have an impact on the efficacy assessments and subjects are analyzed as treated. The PP population is secondary for all efficacy analyses.
The Safety population includes all randomized subjects who received at least one application of study medication. Subjects who have no post-Baseline assessments are included in the Safety population unless all dispensed study drug is returned. All safety analyses are performed on the Safety population.
Clinical Response to Treatment Escape Criteria (for Success and Failure):
Success
The primary efficacy endpoint is the absolute change in inflammatory lesion count at Week 12 compared to Baseline.
The secondary efficacy endpoints are, hierarchically: the dichotomized IGA score where success is defined as a two-step drop in score at Week 12 compared to Baseline; the dichotomized IGA score where success is defined as a two-step drop resulting in a 0 or 1 score at Week 12 compared to Baseline; percent change in inflammatory lesion count at Week 12 compared to Baseline; the dichotomized mIGA score where success is defined as a two-step drop resulting in a 0 or 1 score at Week 12 compared to Baseline.
The null hypotheses of the equality of each active treatment mean to the vehicle treatment mean for absolute change from Baseline to Week 12 in the inflammatory lesion count is tested using an Analysis of Covariance (ANCOVA) with treatment as a main effect, investigational site as a blocking factor, and Baseline inflammatory lesion count as a (linear) covariate. Treatment by (pooled) investigational site interaction is tested separately at 0.1 level of significance. The primary comparison is between the 3% minocycline treatment group and vehicle. Secondary comparison is made between the 1.5% minocycline treatment group and vehicle. The assumptions of normality and homogeneity of variance from the ANCOVA model are tested at 0.05 level of significance.
This analysis is performed for the 3% minocycline group versus vehicle and, if significant, is repeated for the 1.5% minocycline group versus vehicle.
Secondary dichotomized endpoints of IGA success rates at Week 12 are tested using Cochran-Mantel-Haenszel (CMH) test (row mean scores) stratified by investigational site. Comparisons of 3% minocycline versus vehicle and 1.5% minocycline versus vehicle are done using only data from the pair of treatments being compared. Continuous endpoints are analyzed using an ANCOVA model with treatment as a main effect, Baseline and (pooled) investigational site as covariates.
Other secondary endpoints are tested in the order listed above, where the 3% minocycline is compared to vehicle, then the 1.5% minocycline is compared to vehicle on the same secondary endpoint.
Sub-group analyses by gender, age (18-30, 31-50, >50), Baseline lesion count (≤34, 35-75). Other cut-off by baseline lesion counts may be explored. Other important demographic and baseline characteristics sub-groups analyses are conducted. Summaries of primary and important secondary endpoints are done by investigational site.
Safety Tolerability and Adverse Events
The safety assessments in this study are standard safety measures in clinical studies, including physical examinations, vital signs (blood pressure, heart rate), local safety assessment scores (telangiectasis, burning/stinging, and flushing/blushing), questioning on Adverse events (AEs) and serious AEs (SAES) (volunteered, observed, and elicited by general questioning), and clinical laboratory test results (serum chemistry, hematology, urinalysis). The severity of each of the following signs/symptoms is measured by an investigator at Baseline and at Weeks 2, 4, 8 and 12: telangiectasis, burning/stinging, and flushing/blushing, all scored on a 1-5 scale. The score for signs is determined by the investigator and must represent the subject's condition at the time of the evaluation. The score for symptoms, burning/stinging and flushing/blushing, should be scored based on the subject's symptoms reported for the previous three days.
A complete relevant medical and surgical history is obtained at Screening Visit, which will include diseases of the head, ears, eyes, nose and throat, respiratory diseases, cardiovascular diseases, gastrointestinal diseases, hepatic diseases, genitourinary diseases, musculoskeletal diseases, endocrine diseases, neurological diseases, psychiatric diseases, skin diseases, allergies, hematological diseases, and other abnormalities.
Other safety evaluation points will include a history of medication usage (including previous use of acne medications and non-medication therapies) and all medication that the subject is currently taking or any change in medication or dosage since the last visit are documented throughout the study.
Safety assessments will include recording adverse events (AEs) reported spontaneously by the subject or observed by the investigator. An Adverse Event (AE) is any unfavorable or unintended sign, symptom, or disease that appears or worsens in a subject after the subject signs the ICF (and/or Assent Form) for a clinical study. AEs are recorded at each visit throughout the study on the appropriate CRF.
In one or more embodiments, similar clinical studies can be conducted for any tetracycline formulations described herein, such as DOX331, DOX332, DOD-003, MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058.
Compositions
The below compositions, for use in the clinical study, are prepared according to the manufacturing procedures detailed in Example 1.
TABLE 4
FMX103 Minocycline (3% and 1.5%) and placebo Foamable
compositions without silicone dioxide (SiO2)
3% Minocycline 1.5% Minocycline Placebo
Quantitative Quantitative Quantitative
CAS Composition (% Composition (% Composition (%
Number w/w) w/w) w/w)
Minocycline HCl (expressed 13614987 3.00a 1.50a
as minocycline))
Soybean Oil 8001227 50.00 50.00 50.00
Coconut Oil 8001318 23.60 23.60 23.60
Light Mineral Oil 8012951 2.14-2.48b 3.97-4.14b 5.80
Cyclomethicone 69430246 5.00 5.00 5.00
Cetostearyl Alcohol 67762270 3.50 3.50 3.50
Stearic Acid 57114 3.00 3.00 3.00
Myristyl Alcohol 112721 2.50 2.50 2.50
Hydrogenated Castor Oil 8001783 2.00 2.00 2.00
White Wax (Beeswax) 8012893 2.00 2.00 2.00
Stearyl Alcohol 112925 1.50 1.50 1.50
Docosanol (Behenyl alcohol) 661198 1.10 1.10 1.10
Total Bulk 100.00 100.00 100.00
AP-70 (butane, butane 106978 12.0 12.0 12.0
isobutane and isobutane 75285
propane)c propane 74986
aThe amount of minocycline hydrochloride is adjusted by the potency of the minocycline hydrochloride.
bThe amount of light mineral oil in the formulation is adjusted based on the amount of minocycline hydrochloride. For example, if the potency of minocycline is 100%, then the amount of minocycline hydrochloride is 3% and amount of the mineral oil is 2.8% or then the amount of minocycline hydrochloride is 1.5% and amount of the mineral oil is 4.3%.
cAP-70 (CAS # 6847-86-8) is a mixture of about 27% w/w butane, 18% w/w isobutane and 55% w/w propane.
TABLE 5A
Formulations of 1% Minocycline and 4% Minocycline with SiO2
Formulations
244B (FXFM244-1%) 244A(FXFM244-4%)
(1% Minocycline) (4% Minocycline)
Ingredients % w/w % w/w
Light Mineral oil 4.44 1.11
Cyclomethicone 5.00 5.00
Coconut oil 23.60 23.60
Soybean oil 50.00 50.00
Hydrogenated castor oil 2.00 2.00
Beeswax 2.00 2.00
Myristyl alcohol 2.50 2.50
Cetostearyl alcohol 3.50 3.50
Stearyl alcohol 1.50 1.50
Behenyl alcohol 1.10 1.10
Fumed Silica (SiO2) 0.25 0.25
Stearic acid 3.00 3.00
Minocycline HCl 1.11 4.44
(micronized)
(90% potency)
Total 100 100
Propellant AP-70 12.00 12.00
TABLE 5B
Formulations of 1% Minocycline and 4% Minocycline without SiO2
(FMX-101 Foam).
FMX-101 FMX-101
(4%) FOAM (1%) FOAM
Quantitative Quantitative
Composition Composition
Component (% w/w) (% w/w)
Minocycline Hydrochloride 4.00a 1.00a
(micronized) (expressed as
minocycline)
Soybean Oil 50.00 50.00
Coconut Oil 23.60 23.60
Light Mineral Oil 0.91-1.37b 4.58-4.69b
Cyclomethicone 5.00 5.00
Cetostearyl Alcohol 3.50 3.50
Stearic Acid 3.00 3.00
Myristyl Alcohol 2.50 2.50
Hydrogenated Castor Oil 2.00 2.00
White Wax (Beeswax) 2.00 2.00
Stearyl Alcohol 1.50 1.50
Docosanol(behenyl 1.10 1.10
alcohol)
Total Bulk 100 100
AP-70 (butane + isobutane + 12.0 12.0
propane)C
aThe amount of minocycline hydrochloride is adjusted by the potency of the minocycline hydrochloride.
bThe amount of light mineral oil in the formulation is adjusted based on the amount of minocycline hydrochloride. For example if the potency of minocycline is 100%, then the amount of minocycline hydrochloride is 4% and amount of the mineral oil is 1.8% or then the amount of minocycline hydrochloride is 1% and amount of the mineral oil is 4.8%.
CAP-70 (CAS # 6847-86-8) is a mixture of about 27% w/w butane, 18% w/w isobutene and 55% w/w propane.
TABLE 5C
Formulation of DOX-244B with SiO2
Ingredient Name % W/W
Coconut oil 23.60
Mineral oil light 4.35
soybean oil 50.00
stearic acid 3.00
behenyl alcohol 1.10
hydrogenated castor oil 2.00
Beeswax 2.00
Stearyl alcohol 1.50
Cetostearyl alcohol 3.50
Myristyl alcohol 2.50
Cyclomethicone 5.00
Silicon dioxide 0.25
Doxycycline Hyclate (micronized) 1.20
TABLE 5D
Formulation of FDX104 and placebo without SiO2
FDX-104
4% FOAM
Quantitative FDX-104 Placebo FOAM
Composition Quantitative Composition
Component (% w/w) (% w/w)
Doxycycline hyclate 4.00a
(micronized) (expressed
as doxycycline)
Soybean Oil 50.00 50.00
Coconut Oil 23.60 23.60
Light Mineral Oil 0.95-1.21b 5.80
Cyclomethicone 5.00 5.00
Cetostearyl Alcohol 3.50 3.50
Stearic Acid 3.00 3.00
Myristyl Alcohol 2.50 2.50
Hydrogenated Castor Oil 2.00 2.00
White Wax (Beeswax) 2.00 2.00
Stearyl Alcohol 1.50 1.50
Docosanol 1.10 1.10
Total Bulk 100 100
AP-70 (butane + 12.0 12.0
isobutane + propane)C
aThe amount of doxycycline hyclate is adjusted by the potency of the doxycycline hyclate.
bThe amount of light mineral oil in the formulation is adjusted based on the amount of doxycycline hyclate. For example if the potency of doxycycline is 100%, then the amount of doxycycline hyclate is 4% and amount of the mineral oil is 1.8%.
CAP-70 (CAS # 6847-86-8) is a mixture of about 27% w/w butane, 18% w/w isobutene and 55% w/w propane.
TABLE 5E
Formulations of DOX331 and DOX332 without SiO2
Formulations
DOX331 DOX332
Ingredient % w/w % w/w
Mineral oil, heavy* 82.24 88.24
Mineral oil, light 5.00
Stearyl alcohol 4.50 3.70
Stearic acid 2.50 2.50
Behenyl alcohol 1.10 0.70
Paraffin 51-53 0.20
doxycycline hyclate 4.66 4.66
(micronized)**
Total 100.00 100.00
AP-70 12% 12%
*The amount of heavy mineral oil in the formulation is adjusted based on the amount of doxycycline hyclate.
**The amount of doxycycline hyclate is adjusted by the potency of the doxycycline hyclate.
TABLE 5F
Formulation of Doxycycline and adapalene without SiO2
Formulations
DOD-003
Ingredient % w/w
Mineral oil heavy* 81.94
Mineral oil light 5
Stearyl alcohol 4.5
Stearic acid 2.5
Behenyl alcohol 1.1
Doxycycline 4.66
hyclate
(micronized)**
Adapalene 0.3
Total 100
AP-70 12%
*The amount of heavy mineral oil in the formulation is adjusted based on the amount of doxycycline hyclate.
**The amount of doxycycline hyclate is adjusted by the potency of the doxycycline hyclate.
TABLE 5G
Formulations of Minocycline and adapalene without SiO2
MCD- MCD- MCD- MCD- MCD-
Component 037 045 052 053 058
Mineral oil “heavy”* 82.00 88.60 49.00 43.40
Mineral oil light* 5.00 0.70 39.00 39.00
Myristyl alcohol 2.50
Cetostearyl alcohol 3.50
Stearyl alcohol 4.50 3.60 1.50 3.80 4.30
Stearic acid 2.50 2.40 3.00 2.40 2.50
Cyclomethicone 5 5.00 5.00
Coconut oil 23.60
Soybean oil 50.00
Behenyl alcohol 1.10 0.50 1.10 0.70 0.70
Beeswax 2.00
Hydrogenated castor oil 2.00
MCH (micronized)** 4.80 4.80 4.80 4.80 4.80
Adapalene 0.10 0.10 0.30 0.30 0.30
Total 100.00 100.00 100.00 100.00 100.00
AP-70 12% 12% 12% 12% 12%
*The amount of heavy mineral oil or light mineral oil in the formulation is adjusted based on the amount of Minocycline hydrochloride.
**The amount of minocycline hydrochloride is adjusted by the potency of the minocycline hydrochloride.
TABLE 5H
Formulation of Minocycline with fatty alcohol without SiO2
Component MCD-065
Mineral oil light* 45.55
Stearyl alcohol 4.00
Soybean oil 45.05
Behenyl alcohol 0.60
MCH (micronized)** 4.80
Total 100.00
AP-70 12%
Foam quality G
*The amount of light mineral oil in the formulation is adjusted based on the amount of Minocycline hydrochloride.
**The amount of minocycline hydrochloride is adjusted by the potency of the minocycline hydrochloride.
All inactive ingredients used in the formulation are intended for topical use and listed in the current FDA Inactive Ingredient Database; concentrations used do not exceed the maximum concentrations given in Database.
Example 4 Chemical and Physical Stability
The achievement of a long term stable foamable formulation of tetracycline antibiotics described herein, was a major challenge and required both extensive research and creativity.
The chemical and physical stability results of minocycline HCl (MCH) and doxycycline hyclate (“DOX”) in SiO2-containing oleaginous formulations, MCH244 and DOX244, respectively, are described in U.S. application Ser. No. 14/147,376 (U.S. Pub. No. 2014/0121188) and incorporated by reference herein. In an accelerated stability study, samples were stored at 40° C., and the concentrations of minocycline HCl and doxycycline hyclate were determined by UPLC. Stability test for MCH244 results following 2 months, 3 months, 6 months, 9 months, 12 months, 18 months, and 24 months of storage are shown herein below.
The following examples illustrate the chemical stability of minocycline HCl (“MCH”) and doxycycline hyclate (“DOX”) in oleaginous formulations, as described in Tables 6, 7, and 9-11 below. In an accelerated stability study, samples were stored at 40° C., and the concentrations of minocycline HCl and doxycycline hyclate were determined by UPLC. The stability test results following 2 months, 3 months, 6 months, 9 months, 12 months, and 18 months of storage are shown herein below.
Samples of MCH244 and DOX244 1% and 4% were stored at 25° C. and 40° C. in order to test physical and chemical stability.
Inspection of Formulation in Glass Bottles
The use of pressurized glass bottles enables the inspection of formulations for homogeneity in the presence of propellant. Following 18 months of storage at 25° C. the formulation was found to be re-dispersible, i.e., homogeneous following slight shaking.
Stability Following Storage at 25° C. and 40° C.
Storage at 25° C. and 40° C. for 18 months revealed almost no change in the Minocycline concentration. Test results for chemical stability of minocycline following storage for up to 18 months at 25° C. and 40° C. are summarized in Table 6 and Table 7. There was practically no degradation of 244 1% and 4% minocycline following 18 months at 25° C. and also following 9 months at 40° C. These stability results indicate shelf life of more than two years at ambient temperature. Test results for chemical stability of doxycycline following storage for up to 9 months at 25° C. and 40° C. are summarized in Tables 9-11. There was practically no degradation of doxycycline following 6 months at 25° C. and at 40° C. These stability results likewise indicate a long shelf life of more than two years at ambient temperature. In one or more embodiments, the tetracycline composition has a shelf life of at least 6 months, or at least 9 months, or at least 12 months, or at least 15 months, or at least 18 months, or at least 21 months, or at least 24 months at ambient temperature. In one or more embodiments, the tetracycline composition has a shelf life of at least 6 months, or at least 9 months, or at least 12 months, or at least 15 months, or at least 18 months, or at least 21 months, or at least 24 months at 25° C. In one or more embodiments, the tetracycline composition has a shelf life of at least 1 month, or at least 3 months, or at least 6 months, or at least 9 months, or at least 12 months at 40° C.
TABLE 6
Minocycline content in MCH244 1% (with SiO2) following
storage for 18 months at 25° C. and 40° C.
Minocycline content (% w/w)
Temp T = 0 3 M 6 M 9 M 12 M 18 M
25° C. 1.001 NM 0.986 1.007 0.972 0.959
40° C. 1.001 1.002 0.983 0.965 NM NM
NM = not measured
TABLE 7
Minocycline content in MCH244 4% following storage for
18 months at 25° C. and 40° C. (Lot MCH-244-100825)
(with SiO2)
Minocycline content (% w/w)
Temp T = 0 1 M 3 M 6 M 9 M 12 M 18 M
25° C. 4.049 NM NM 3.993 3.991 3.886 3.701
40° C. 4.049 3.935 3.852 4.035 3.9137 NM NM
Minocycline Physical Stability:
The results for physical stability following storage at 25° C. and 40° C. for 18 months were as follows:
Foam quality: Conformed to the foam quality specification following storage for 9 months at 40° C.
Odor: Conformed to the specifications and showed no odor following storage at 40° C. for 9 months.
Color: The color of the formulation remained light, slightly changed to grey-yellow following storage at 40° C. for 9 months. No change was observed at 25° C.
Shakeability: Conformed to specifications following storage at 40° C. for 9 months.
Density: No significant change in density was found after storage at 40° C. for 9 months.
Collapse time: No change in foam collapse time (the time for the foam to reach half of its initial height) was found in any of the formulation samples tested after storage for 9 months at 40° C.
Microscopic observations: No significant change in the microscopic appearance was noted following storage at 40° C. for 9 months.
Corrosion and deterioration: The coated aluminum surfaces of the can and valve and the plastic housing of the valve appeared fully intact and showed no signs of corrosion or deterioration. No changes in color or deformation were observed.
Doxycycline DOX-244B Physical and Chemical Stability:
The results for physical stability following storage at 25° C. for 18 months and for 24 months were as follows:
Foam quality: excellent.
Collapse time: At least 180 seconds.
Production: GMP Compliance.
For the purpose of clinical supplies, the production of the compositions was performed according to the principles of current good manufacturing practice (c-GMP). Production conditions were aimed to ensure high quality of the product and to prevent any potential cross contamination. The production site was certified by the Israel Ministry of Health as suitable for GMP production and supply of small clinical batches for Phase I and IIa clinical trials.
The below composition was prepared according to the manufacturing procedures detailed in Example 1.
TABLE 8
Formulation of DOX-244B-111123
Ingredient Name % W/W
Coconut oil 23.60
Mineral oil light 4.35
soybean oil 50.00
stearic acid 3.00
behenyl alcohol 1.10
hydrogenated castor oil 2.00
Beeswax 2.00
Stearyl alcohol 1.50
Cetostearyl alcohol 3.50
Myristyl alcohol 2.50
Cyclomethicone 5.00
Silicon dioxide 0.25
Doxycycline Hyclate (micronized) 1.20
TABLE 9
Doxycycline content (%) in DOX-244B-111123 PF following storage for 9 months
at 5° C., 25° C., 40° C., and 50° C.
Doxycycline content (% w/w)
Batch/Sample 1 M 2 M 3 M
name T = 0 5° C. 25° C. 50° C. 25° C. 50° C. 25° C. 40° C.
DOX-244- 1.0220 1.031 1.022 1.010 1.031
111123 PF
DOX-244- 1.0800 1.098 1.080 1.060 1.045 1.082 1.046
111123 PFF
Doxycycline content (% w/w)
Batch/Sample 6 M 9 M 12 M 18 M 24 M
name 25° C. 40° C. 25° C. 25° C. 25° C. 25° C.
DOX-244- 1.017 1.025 1.053 0.967 0.994 1.021
111123 PF
DOX-244- 1.046 1.028 1.091 1.044 1.018 1.051
111123 PFF
TABLE 10
Stability of Doxycycline Foam at 25° C. and 40° C.
%1 Doxycycline Hyclate in DOX244 foam product
Months
40° C. (foam) 25° C. (foam)
0 102.2 102.2
1 102.2
2
3 103.1 101.0
6 102.5 101.7
9 105.3
12 96.7
18 99.4
24 102.1
1The percentages are derived from the PF figures in Table 9. Note 1.2% doxycycline hyclate is equivalent to 1.0176%. doxycycline based on USP
TABLE 11
Degradation of Doxycycline at 5° C., 25° C., 40° C., and 50° C.
Degradation Batch/Sample DOX-244B-
product w/w name DOX-244B-111123 PF 111123 PFF
T0 RRT 0.75 0.003 0.004
RRT 0.85 0.010 0.011
1 M 5° C. 0.003 0.003
RRT 0.75
5° C. 0.010 0.010
RRT 0.85
25° C. 0.003 0.003
RRT 0.75
25° C. 0.010 0.010
RRT 0.85
50° C. 0.003
RRT 0.75
50° C. 0.01
RRT 0.85
2 M 50° C. 0.003
RRT 0.75
50° C. 0.009
RRT 0.85
3 M 25° C. 0.003 0.004
RRT 0.75
25° C. 0.01 0.011
RRT 0.85
40° C. 0.003 0.003
RRT 0.75
40° C. 0.01 0.01
RRT 0.85
6 M 25° C. 0.003 0.003
RRT 0.75
25° C. 0.01 0.01
RRT 0.85
40° C. 0.003 0.003
RRT 0.75
40° C. 0.01 0.01
RRT 0.85
9 M 25° C. 0.003 0.003
RRT 0.75
25° C. 0.009 0.01
RRT 0.85
12 M  25° C. 0.003 0.003
RRT 0.75
25° C. 0.009 0.009
RRT 0.85
18 M  25° C. 0.003 0.003
RRT 0.75
25° C. 0.009 0.009
RRT 0.85
24 M  25° C. 0.003 0.003
RRT 0.75
25° C. 0.009 0.009
RRT 0.85
TABLE 12
Appearance and Collapse time of Doxycycline at 25° C. and 40° C.
Collapse Collapse
Appearance Appearance time (25° C.) time (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time (sec) FG (sec) time (sec) FG (sec)
T0 G 100 150
 3 M E G 115 90 165 90
 6 M E G >180 120 >180 >180
 9 M E 150 120
12 M G 105 120
18 M E >180 >180
24 M E >180 >180
Doxycycline DOX-330A-140331 (without SiO2) Physical and Chemical Stability:
The results for physical stability following storage at 25° C. for 9 months and for 12 months were as follows:
Foam quality: Excellent.
Collapse time: At least 180 seconds.
Production: GMP Compliance.
For the purpose of clinical supplies, the production of the compositions was performed according to the principles of current good manufacturing practice (c-GMP). Production conditions were aimed to ensure high quality of the product and to prevent any potential cross contamination. The production site was certified by the Israel Ministry of Health as suitable for GMP production and supply of small clinical batches for Phase I and IIa clinical trials.
The below composition was prepared according to the manufacturing procedures detailed in Example 1.
TABLE 13
Formulation of DOX-330A-140331 (FDX104 without SiO2)
Ingredient Name % W/W
Coconut oil 23.60
Mineral oil light 0.90
soybean oil 50.00
stearic acid 3.00
behenyl alcohol 1.10
hydrogenated castor oil 2.00
Beeswax 2.00
Stearyl alcohol 1.50
Cetostearyl alcohol 3.50
Myristyl alcohol 2.50
Cyclomethicone 5.00
Doxycycline Hyclate (micronized) 4.90
TABLE 14
Doxycycline % content in DOX-330A-140331 PF following storage for 12 months
at 25° C. and 40° C.
Batch/Sample 3 w 2 M 3 M 6 M 9 M 12 M
name T = 0 40° C. 40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 25° C.
DOX-330A- 4.032 3.984 3.981 4.086 3.942 4.086 4.088 3.993 4.032
140331 PF
TABLE 15
Stability of Doxycycline Foam Formulation without SiO2 at 25° C. and
40° C.
%2 Doxycycline Hyclate in DOX330 foam product
Months
40° C. (foam) 25° C. (foam)
0 100.8 100.8
0.75 99.6
2 99.5
3 98.6 102.2
6 102.2 102.2
9 99.8
12 100.8
18
24
2The percentages are derived from the PF figures in Table 14. Note 1.2% doxycycline hyclate is equivalent to 1.0176%. doxycycline based on USP
TABLE 16
Degradation of Doxycycline in Formulation
without SiO2 at 25° C. and 40° C.
Degradation Batch/Sample
product w/w name DOX-330A-140331 PF
T0 RRT 0.85
3 w 40° C. 0.017
RRT 0.85
2 M 40° C. 0.014
RRT 0.85
3 M 25° C. 0.016
RRT 0.85
40° C. 0.016
RRT 0.85
6 M 25° C. 0.017
RRT 0.85
40° C. 0.017
RRT 0.85
9 M 25° C. 0.020
6-epi (RRT 0.85)
12 M  25° C. 0.0213
6-epi (RRT 0.85)
TABLE 17
Appearance and Collapse time of Doxycycline Foam Formulation without SiO2 at
25° C. and 40° C.
Collapse time Collapse time
Appearance Appearance (25° C.) (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time (sec) FG (sec) time (sec) FG (sec)
T0 E 160 180
 3 W E-falls a >180 >180
little
 2 M E >180 >180
 3 M E E >180 >180 180 >180
 6 M E E >180 >180 >180 >180
 9 M E >180 >180
12 M E >180 >180
Doxycycline Physical and Chemical Stability in Formulation without SiO2:
The results for physical stability following storage at 25° C. for 9 months and for 6 months were as follows:
Foam quality: Excellent.
Odor: No odor
Collapse time: At least 120 seconds.
Production: GMP Compliance.
For the purpose of clinical supplies, the production of the compositions was performed according to the principles of current good manufacturing practice (c-GMP). Production conditions were aimed to ensure high quality of the product and to prevent any potential cross contamination. The production site was certified by the Israel Ministry of Health as suitable for GMP production and supply of small clinical batches for Phase I and IIa clinical trials.
The below composition was prepared according to the manufacturing procedures detailed in Example 1.
TABLE 18
Formulation of DOX-330A-140818 PF (FDX104)
Ingredient Name % W/W
Coconut oil 23.60
Mineral oil light 1.13
soybean oil 50.00
stearic acid 3.00
behenyl alcohol 1.10
hydrogenated castor oil 2.00
Beeswax 2.00
Stearyl alcohol 1.50
Cetostearyl alcohol 3.50
Myristyl alcohol 2.50
Cyclomethicone 5.00
Doxycycline Hyclate (micronized) 4.67
TABLE 19
Doxycycline % content in DOX-330A-140818 (FDX104) PF without SiO2
following storage for 9 months at 25° C. and 40° C.
Doxycycline content (% w/w)
Batch/Sample 1 M 3 M 6 M 9 M 12 M 18 M 24 M
name T = 0 40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 25° C. 25° C. 25° C.
DOX-330A- 3.908 3.899 3.792 3.763 3.727 3.783 3.763
140818 PF
TABLE 20
Stability of Doxycycline Foam at 25° C. and 40° C.
%3 Doxycycline in DOX330 140818
Months 40° C. (foam) 25° C. (foam)
0 97.7 97.7
1 97.5
3 94.1 94.8
6 94.6 93.2
9 94.1
12
18
24
3The percentages are derived from the PF figures in Table 19. Note 1.2% doxycycline hyclate is equivalent to 1.0176%. doxycycline based on USP
TABLE 21
Degradation of Doxycycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name DOX330 140818
T = 0 RRT 0.85 0.016
(6-epi)
1 M 40° C. 0.017
RRT 0.85 (6-epi)
3 M 25° C. 0.019
6-epi
40° C. 0.019
6-epi
6 M 25° C. 0.019
6-epi
40° C. 0.019
6-epi
9 M 25° C. 0.019
6-epi
TABLE 22
Appearance and Collapse time of Doxycycline at 25° C. and 40° C.
Collapse time Collapse time
Appearance Appearance (25° C.) (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time (sec) FG (sec) time (sec) FG (sec)
T0 E 155 180
1 M E 90 >180
3 M E E 180 >180 150 >180
6 M E E 180 >180 >180 >180
9 M E 120 >180
Doxycycline and Adapalene DOD-003 Physical and Chemical Stability:
TABLE 23
Doxycycline % content in DOD-003 following storage for 1 month at
25° C., 40° C. and 60° C.
Doxycycline content (% w/w)
Batch/Sample T = 0 1 M
name 25° C./40° C. 60° C. 25° C. 40° C. 60° C.
DOD-003 3.850 3.880 3.949 3.860 3.824
TABLE 24
Stability of Doxycycline at 25° C., 40° C. and 60° C.
%4 Doxycycline in DOD-003
Months 25° C. (foam) 40° C. (foam) 60° C. (Pre foam formulation)
0 96.3 96.3 97.0
1 98.7 96.5 95.6
4The percentages are derived from the figures in Table 23.
TABLE 25
Degradation of Doxycycline at 25° C., 40° C. and 60° C.
Degradation
product w/w Batch/Sample name DOD-003
T = 0 25° C. 6-epi 0.021
40° C. 6-epi 0.021
60° C. 6-epi 0.022
1 M 25° C. 6-epi 0.022
40° C. 6-epi 0.021
60° C. 6-epi 0.021
TABLE 26
Appearance, Collapse time and shakeability of Doxycycline at 25° C. and 40° C. in
DOD-003
Collapse time
Appearance 25° C. 40° C. 60° C.
Time 25° C. 40° C. 60° C. Collapse Time to Collapse Time to Collapse Time to
Pts Quality Quality Quality time (s) FG (s) time (s) FG (s) time (s) FG (s)
T0 E E NM >180 >180 >180 >180 NM NM
1 M E E NM >180 120 >180 120 NM NM
Time Points Shakeability (25° C.) Shakeability (40° C.) Shakeability (60° C.)
T0 2 2 NM
1 M 0 2 NM
TABLE 27
Adapalene % content in DOD-003 following storage for 1 month at
25° C., 40° C. and 60° C.
Adapalene content (% w/w)
Batch/Sample T = 0 1 M
name 25° C./40° C. 60° C. 25° C. 40° C. 60° C.
DOD-003 0.2948 0.2948 0.3030 0.2950 0.3076
TABLE 28
Stability of Adapalene at 25° C., 40° C. and 60° C.
%5 Adapalene in DOD-003
60° C. (Pre foam
Months 25° C. (foam) 40° C. (foam) formulation)
0 98.3 98.3 98.3
1 101.0 98.3 102.5
5The percentages are derived from the figures in Table 27.
Minocycline and Adapalene MCD-037-160320 Physical and Chemical Stability:
TABLE 29
Minocycline % content in MCD-037-160320 following storage for 4 months at
25° C. and 40° C.
Minocycline content (% w/w)
Batch/Sample T = 0 1 M 2 M 3 M 4 M
name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-037- 3.89 NM 3.90 NM 4.03 3.88 3.89 3.99 3.95
160320
TABLE 30
Stability of Minocycline at 25° C. and 40° C.
%6 Minocycline in MCD-037-160320
Months 25° C. (foam) 40° C. (foam)
0 97.22 97.22
1 NM 97.62
2 NM 100.68
3 97.01 97.30
4 99.66 98.79
6The percentages are derived from the figures in Table 29.
TABLE 31
Degradation of Minocycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name MCD-037-160320
T = 0 25° C. 4-epi 0.06
40° C. 4-epi 0.06
1 M 25° C. 4-epi NM
40° C. 4-epi 0.10
2 M 25° C. 4-epi NM
40° C. 4-epi 0.08
3 M 25° C. 4-epi 0.07
40° C. 4-epi 0.09
4 M 25° C. 4-epi 0.09
40° C. 4-epi 0.10
TABLE 32
Appearance, collapse time, shakeability and homogeneity of Minocycline at 25° C.
and 40° C. in MCD-037-160320
Collapse time Collapse time
Appearance Appearance (25° C.) (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time (sec) FG (sec) time (sec) FG (sec)
T0 E E >180 >180 >180 >180
1 M NM E NM NM >180 >180
2 M NM E NM NM >180 >180
3 M E E >180 >180 >180 >180
4 M E E >180 >180 >180 >180
Time Shakeability Shakeability
Points (25° C.) (40° C.) Homogeneity (25° C.) Homogeneity (40° C.)
T0 2 2 Crystals uniformly Crystals uniformly
distributed distributed
1 M NM 2 NM Crystals uniformly
distributed
2 M NM 2 NM Crystals uniformly
distributed
3 M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
4 M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
TABLE 33
Adapalene % content in MCD-037-160320 following storage for 4 months at
25° C. and 40° C.
Adapalene content (% w/w)
Batch/Sample T = 0 1 M 2 M 3 M 4 M
name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-037- 0.09 NM 0.10 NM 0.10 0.10 0.10 0.0967 0.10
160320
TABLE 34
Stability of Adapalene at 25° C. and 40° C.
%7 Adapalene in MCD-037-160320
Months 25° C. (foam) 40° C. (foam)
0 93.9 93.9
1 NM 96.9
2 NM 95.7
3 96.4 97.4
4 96.7 97.10
7The percentages are derived from the figures in TABLE 33.
Minocycline and Adapalene MCD-045-160306 physical and chemical Stability:
TABLE 35
Minocycline % content in MCD-045-160306 following storage for 3 months at
25° C. and 40° C.
Minocycline content (% w/w)
Batch/Sample T = 0 1 M 2 M 3 M
name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-045- 3.83 NM 4.21 NM 3.93 3.91 3.96
160306
TABLE 36
Stability of Minocycline at 25° C. and 40° C.
%8 Minocycline in MCD-045-160306
Months 25° C. (foam) 40° C. (foam)
0 95.76 95.76
1 NM 105.15
2 NM 98.14
3 97.79 99.08
8The percentages are derived from the figures in TABLE 35.
TABLE 37
Degradation of Minocycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name MCD-045-160306
T = 0 25° C. 4-epi 0.07
40° C. 4-epi 0.07
1 M 25° C. 4-epi NM
40° C. 4-epi 0.11
2 M 25° C. 4-epi NM
40° C. 4-epi 0.07
3 M 25° C. 4-epi 0.08
40° C. 4-epi 0.10
TABLE 38
Appearance, collapse time, shakeability and homogeneity of Minocycline at 25° C.
and 40° C. in MCD-045-160306
Collapse time Collapse time
Appearance Appearance (25° C.) (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time (sec) FG (sec) time (sec) FG (sec)
T0 E E >180 >180 >180 >180
1 M NM E NM NM >180 >180
2 M NM E NM NM >180 >180
3 M E E >180 >180 >180 150
4 M E E >180 >180 140 120
Time Shakeability Shakeability
Points (25° C.) (40° C.) Homogeneity (25° C.) Homogeneity (40° C.)
T0 2 2 Crystals uniformly Crystals uniformly
distributed distributed
1 M NM 2 NM Crystals uniformly
distributed
2 M NM 2 NM Crystals uniformly
distributed
3 M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
4 M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
TABLE 39
Adapalene % content in MCD-045-160306 following storage for 3 months at
25° C. and 40° C.
Adapalene content (% w/w)
Batch/Sample T = 0 1 M 2 M 3 M
name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-045- 0.10 NM 0.10 NM 0.10 0.09 0.10
160306
TABLE 40
Stability of Adapalene at 25° C. and 40° C.
%9 Adapalene in MCD-045-160306
Months 25° C. (foam) 40° C. (foam)
0 95.10 95.03
1 NM 101.13
2 NM 95.80
3 94.40 95.83
9The percentages are derived from the figures in Table 39.
Minocycline and Adapalene MCD-052-160410 Physical and Chemical Stability:
TABLE 41
Minocycline % content in MCD-052-160410 following storage for 3 months at
25° C. and 40° C.
Minocycline content (% w/w)
Batch/Sample T = 0 1 M 2 M 3 M
name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-052- 3.94 3.88 3.71 3.82 3.80 3.81 3.84
160410
TABLE 42
Stability of Minocycline at 25° C. and 40° C.
%10 Minocycline in MCD-052-160410
Months 25° C. (foam) 40° C. (foam)
0 98.48 98.48
1 97.02 92.75
2 95.43 95.08
3 95.30 96.05
10The percentages are derived from the figures in Table 41.
TABLE 43
Degradation of Minocycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name MCD-052-160410
T = 0 25° C. 4-epi 0.09
40° C. 4-epi 0.09
1 M 25° C. 4-epi 0.07
40° C. 4-epi 0.06
2 M 25° C. 4-epi 0.08
40° C. 4-epi 0.08
3 M 25° C. 4-epi 0.09
40° C. 4-epi 0.07
TABLE 44
Appearance, collapse time, shakeability and homogeneity of Minocycline at 25° C.
and 40° C. in MCD-052-160410
Collapse time Collapse time
Appearance Appearance (25° C.) (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time (sec) FG (sec) time (sec) FG (sec)
T0 E E >180 >180 >180 >180
1 M E E >180 >180 >180 >180
2 M E E >180 >180 >180 >180
3 M E E NM NM NM NM
Time Shakeability Shakeability
Points (25° C.) (40° C.) Homogeneity (25° C.) Homogeneity (40° C.)
T0 2 2 Crystals uniformly Crystals uniformly
distributed distributed
1 M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
2 M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
3 M 0 0 Crystals uniformly Crystals uniformly
distributed distributed
TABLE 45
Adapalene % content in MCD-052-160410 following storage for 3 months
at 25° C. and 40° C.
Adapalene content (% w/w)
T = 0 1M 2M 3M
Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-052-160410 0.29 0.29 0.29 0.30 0.30 0.30 0.29
TABLE 46
Stability of Adapalene at 25° C. and 40° C.
%11 Adapalene in MCD-052-160410
25° C. 40° C.
Months (foam) (foam)
0 97.31 97.31
1 95.50 96.74
2 98.69 99.00
3 99.16 97.78
11The percentages are derived from the figures in Table 45.
Minocycline and Adapalene MCD-053-160413 Physical and Chemical Stability:
TABLE 47
Minocycline % content in MCD-053-160413 following storage for 3 months
at 25° C. and 40° C.
Minocycline content (% w/w)
T = 0 1M 2M 3M
Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-053-160413 3.91 3.95 3.91 3.84 3.88 3.97 3.94
TABLE 48
Stability of Minocycline at 25° C. and 40° C.
%12 Minocycline in MCD-053-160413
25° C. 40° C.
Months (foam) (foam)
0 97.79 97.79
1 98.64 97.69
2 96.03 96.98
3 99.32 98.43
12The percentages are derived from the figures in Table 47.
TABLE 49
Degradation of Minocycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name MCD-053-160413
T = 0 25° C. 4-epi 0.07
40° C. 4-epi 0.07
1 M 25° C. 4-epi 0.07
40° C. 4-epi 0.08
2 M 25° C. 4-epi 0.08
40° C. 4-epi 0.09
3 M 25° C. 4-epi 0.11
40° C. 4-epi 0.11
TABLE 50
Appearance, collapse time, shakeability and homogeneity of Minocycline at 25° C. and 40° C.
in MCD-053-160413
Appearance Appearance Collapse time (25° C.) Collapse time (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time(sec) FG(sec) time(sec) FG(sec)
T0 E E >180 >180 >180 >180
1M E E >180 60 >180 >180
2M E E 175 180 180 180
Time Shakeability Shakeability Homogeneity Homogeneity
Points (25° C.) (40° C.) (25° C.) (40° C.)
T0 2 2 Crystals uniformly Crystals uniformly
distributed distributed
1M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
2M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
TABLE 51
Adapalene % content in MCD-053-160413 following storage for 3 months
at 25° C. and 40° C.
Adapalene content (% w/w)
T = 0 1M 2M 3M
Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-053-160413 0.28 0.28 0.28 0.28 0.28 0.29 0.28
TABLE 52
Stability of Adapalene at 25° C. and 40° C.
%13 Adapalene in MCD-053-160413
25° C. 40° C.
Months (foam) (foam)
0 93.41 93.41
1 94.66 93.42
2 91.80 93.78
3 95.44 94.07
13The percentages are derived from the figures in Table 51.
Minocycline and Adapalene MCD-058-160414 Physical and Chemical Stability:
TABLE 53
Minocycline % content in MCD-058-160414 following storage for 3 months
at 25° C. and 40° C.
Minocycline content (% w/w)
T = 0 1M 2M 3M
Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-058-160414 4.06 3.90 3.97 3.92 4.01 3.91 3.90
TABLE 54
Stability of Minocycline at 25° C. and 40° C.
%14 Minocycline in MCD-058-160414
25° C. 40° C.
Months (foam) (foam)
0 101.61 101.61
1 97.58 99.20
2 97.88 100.36
3 97.76 97.50
14The percentages are derived from the figures in Table 53.
TABLE 55
Degradation of Minocycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name MCD-058-160414
T = 0 25° C. 4-epi 0.09
40° C. 4-epi 0.09
1 M 25° C. 4-epi 0.09
40° C. 4-epi 0.10
2 M 25° C. 4-epi 0.09
40° C. 4-epi 0.10
3 M 25° C. 4-epi 0.12
40° C. 4-epi 0.12
TABLE 56
Appearance, Collapse time, shakeability and homogeneity of Minocycline at 25° C.
and 40° C. in MCD-058-160414
Appearance Appearance Collapse time (25° C.) Collapse time (40° C.)
Time (25° C.) (40° C.) Collapse Time to Collapse Time to
Points Quality Quality time(sec) FG(sec) time(sec) FG(sec)
T0 E E >180 150 >180 150
1M E E >180 >180 >180 >180
2M E E >180 180 >180 180
Time Shakeability Shakeability Homogeneity Homogeneity
Points (25° C.) (40° C.) (25° C.) (40° C.)
T0 2 2 Crystals uniformly Crystals uniformly
distributed distributed
1M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
2M 2 2 Crystals uniformly Crystals uniformly
distributed distributed
TABLE 57
Adapalene % content in MCD-058-160414 following storage for 3 months
at2 5° C. and 40° C.
Adapalene content (% w/w)
T = 0 1M 2M 3M
Batch/Sample name 25° C./40° C. 25° C. 40° C. 25° C. 40° C. 25° C. 40° C.
MCD-058-160414 0.29 0.27 0.28 0.28 0.29 0.29 0.29
TABLE 58
Stability of Adapalene at 25° C. and 40° C.
%15 Adapalene in MCD-058-160414
25° C. 40° C.
Months (foam) (foam)
0 95.01 95.01
1 91.47 94.05
2 93.64 95.11
3 95.87 95.09
15The percentages are derived from the figures in Table 57.
Doxycycline DOX331 Physical and Chemical Stability:
TABLE 59
Doxycycline % content in DOX331 following storage
for 1 week at 25° C. and 40° C.
Doxycycline content (% w/w)
Batch/Sample T = 0 1 Week
name 25° C. 40° C. 25° C. 40° C.
DOX331 4.146 4.146 4.103 4.106
TABLE 60
Stability of Doxycycline at 25° C. and 40° C.
%16 Doxycycline in DOX331
Time 25° C. 40° C.
0 103.7 103.7
1 week 102.6 102.7
16The percentages are derived from the figures in Table 59.
TABLE 61
Degradation of Doxycycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name DOX331
T = 0 25° C. 6-epi 0.026
40° C. 6-epi 0.026
1 Week 25° C. 6-epi 0.026
40° C. 6-epi 0.025
TABLE 62
Appearance, collapse time and shakeability of Doxycycline
at 25° C. and 40° C. in DOX331
Appearance Appearance
(25° C.) (40° C.) Shakeability Shakeability
Time Points Quality Quality (25° C.) (40° C.)
T0 E E 0 0
1 week E E 1 1
Doxycycline DOX332 Physical and Chemical Stability:
TABLE 63
Doxycycline % content in DOX332 following storage
for 1 week at 25° C. and 40° C.
Doxycycline content (% w/w)
Batch/Sample T = 0 1 Week
name 25° C. 40° C. 25° C. 40° C.
DOX332 4.074 4.074 4.124 4.169
TABLE 64
Stability of Doxycycline at 25° C. and 40° C.
%17 Doxycycline in DOX332
Time 25° C. 40° C.
0 101.8 101.8
1 week 103.1 104.2
17The percentages are derived from the figures in Table 63.
TABLE 65
Degradation of Doxycycline at 25° C. and 40° C.
Degradation
product w/w Batch/Sample name DOX332
T = 0 25° C. 6-epi 0.026
40° C. 6-epi 0.026
1 Week 25° C. 6-epi 0.026
40° C. 6-epi 0.026
TABLE 66
Appearance, collapse time and shakeability of Doxycycline
at 25° C. and 40° C. in DOX332
Appearance Appearance
(25° C.) (40° C.) Shakeability Shakeability
Time Points Quality Quality (25° C.) (40° C.)
T0 E E 1 1
1 week E E 1 1
Minocycline FMX103 (1.5% Minocycline) Chemical Stability:
TABLE 67
Stability of Minocycline at 25° C., 30° C. and 40° C.
% Minocycline in FMX103 (1.5% minocycline) % Minocycline in FMX103(1.5% minocycline)
Batch: 5042301 Batch: 5082401
Months 25° C. 30° C. 40° C. Months 25° C. 30° C. 40° C.
0 92.8-94.6 92.8-94.6 92.8-94.6 0 97.8 97.8 97.8
1 NM 94.8 80.2 1 NM 95.9 95.4
2 NM 91.9 88.2 2 NM 94.8 92.9
3 92.8 91.0 87.2/87.3 3 96.8 96.0 92.8
6 92.4 92.0 85.9/85.7 6 95.9 91.2 95.9
9 92.4 90.5 NM 9 NM NM NM
12 NM NM NM 12 NM NM NM
TABLE 68
Degradation of Minocycline at 25° C., 30° C. and 40° C.
FMX103 FMX103
Degradation Batch/Sample (1.5% minocycline) (1.5% minocycline)
product w/w name Batch: 5042301 Batch: 5082401
T = 0 25° C. 4-epi 0.0555 0.0465
30° C. 4-epi 0.0555 0.0465
40° C. 4-epi 0.0555 0.0465
1 M 25° C. 4-epi NM NM
30° C. 4-epi 0.06 0.042
40° C. 4-epi 0.0495 0.048
2 M 25° C. 4-epi NM NM
30° C. 4-epi 0.0585 0.0585
40° C. 4-epi 0.057 0.063
3 M 25° C. 4-epi 0.06 0.06
30° C. 4-epi 0.0555 0.057
40° C. 4-epi 0.054 0.051
6 M 25° C. 4-epi 0.069 0.0525
30° C. 4-epi 0.0615 0.0675
40° C. 4-epi 0.0285 0.0255
9 M 25° C. 4-epi 0.0555 NM
30° C. 4-epi 0.0645 NM
40° C. 4-epi NM NM
12 M  25° C. 4-epi NM NM
30° C. 4-epi NM NM
40° C. 4-epi NM NM
Minocycline FMX103 (3% Minocycline) Chemical Stability:
TABLE 69
Stability of Minocycline at 25° C. and 30° C.
% Minocycline in FMX103 (3% minocycline) % Minocycline in FMX103 (3% minocycline)
Batch: 5020901 Batch: 5082601
Months 25° C. 30° C. 40° C. Months 25° C. 30° C. 40° C.
0 96.4 96.4 96.4 0 98.8 98.8 98.8
1 NM 92.9 95.0 1 NM 95.6 96.5
2 NM NM NM 2 NM 94.5 96.6
3 94.7 93.7 92.0 3 98.2 97.9 95.5
6 93.2 90.6 87.5 6 97.8 97.1 93.6
9 92.0 88.7/91.5 NM 9 NM NM NM
12 93.4 93.5 NM 12 NM NM NM
TABLE 70
Degradation of Minocycline at 25° C., 30° C. and 40° C.
FMX103 FMX103
Degradation Batch/Sample (3% minocycline) (3% minocycline)
product w/w name Batch: 5020901 Batch: 5082601
T = 0 25° C. 4-epi 0.114 0.09
30° C. 4-epi 0.114 0.09
40° C. 4-epi 0.114 0.09
1 M 25° C. 4-epi NM NM
30° C. 4-epi 0.099 0.078
40° C. 4-epi 0.099 0.087
2 M 25° C. 4-epi NM NM
30° C. 4-epi NM 0.105
40° C. 4-epi NM 0.12
3 M 25° C. 4-epi 0.114 0.111
30° C. 4-epi 0.111 0.102
40° C. 4-epi 0.102 0.114
6 M 25° C. 4-epi 0.111 0.105
30° C. 4-epi 0.099 0.105
40° C. 4-epi 0.066 0.054
9 M 25° C. 4-epi 0.114 NM
30° C. 4-epi 0.114 NM
40° C. 4-epi NM NM
12 M  25° C. 4-epi 0.102 NM
30° C. 4-epi 0.108 NM
40° C. 4-epi NM NM
Example 5 Clinical Study Phase I (FMX-101 Foam, 4% Minocycline Foam without SiO2) PK Study Under Maximum Use Conditions for 16 Days
Study Synopsis
In this example, topical administration of tetracycline (for example minocycline) was studied and the pharmacokinetic profile of the drug and its bioavailability was characterized.
STUDY TITLE: An Open-label, Multiple Dose Study to Assess the Pharmacokinetic Profile of Minocycline from FMX-101 Foam (4%) in Male and Female Volunteers.
OBJECTIVES: 1. To assess bioavailability of minocycline from FMX-101 minocycline HCl foam, 4%. 2. To characterize the pharmacokinetic profile of minocycline following multiple-dose topical administration of FMX-101 (4%) in healthy volunteers with or without acne.
STUDY MEDICATION: FMX-101 minocycline (4%)—approximately 4 gr per application. The composition of FMX-101 Foam (4%) is described in Table 5B above.
DOSAGE FORM: Foam.
INDICATION: Acne vulgaris.
DESIGN: An open-label, single-center, non-randomized, multiple administrations study in males and females, some of which are with acne. Twelve (12) subjects (at least 4 subjects with acne) enrolled to receive a daily dose of topical FMX-101 minocycline (4%) foam for sixteen consecutive days.
Eligible subjects were admitted to the Clinical Research Center (CRC) in the evening before the first study drug administration (Day 0), and remained in-house for 24 hours after first dosing (Day 1). Throughout this day blood samples for PK were drawn at time points specified below. After receiving the second dose (Day 2) they were released from the CRC.
Subjects then arrived at the CRC on the mornings of Days 3, 5, 7, 8, 9, 10, 11, 12, 14 and 15. They remained under supervision in the CRC, with the application areas uncovered, for 30 min before being released. On Days 3, 7, 9, 11 and 14, blood was drawn for PK (trough) within 10 min before the subjects received the study drug.
On days 4, 6 and 13 the drug was applied at home by the subject according to the Investigator/study staff instructions.
On the evening of Day 15 the subjects were re-admitted to the CRC. On Day 16 they received the last (sixteenth) dose and went through the same procedures as in Day 1. After being released form the CRC they were required to attend three additional ambulatory PK blood sampling (36, 48 and 60 hours post-dose).
PK Evaluation Timing of PK Blood Sampling
Blood samples to determine plasma of minocycline were collected at the following time points:
    • Day 1: pre-dose (within 90 min before first dosing), 30 min, 1, 2, 4, 8, 12, 16 hours post-dose and Day 2 at 24 hrs post-dose within 10 min before second dosing—a total of 9 samples).
    • Days 3, 7, 9, 11 and 14: pre-dose (trough) samples, within 10 min before drug application.
    • Day 16: pre-dose (within 10 min before drug application), 30 min, 1, 2, 4, 8, 12, 16 hours post-dose, Day 17, 24 (±10 min) hours post-dose (before discharge from the CRC) and additional ambulatory PKs at 36 (±15 min), (Day 17), 48 (±30 min) and 60 (±30 min) hours after last drug application (Day 18)—a total of 12 blood samples.
TABLE 71
PK sampling scheme
Study Day Time relative to dosing
Day
1 0 h
(Pre-dose)
0.5 h  
1 h
2 h
4 h
8 h
12 h 
16 h 
Day
2 Pre-dose (24 h post-dose)
Day 3 Pre-dose (24 h post-dose)
Day 7 Pre-dose (24 h post-dose)
Day 9 Pre-dose (24 h post-dose)
Day 11 Pre-dose (24 h post-dose)
Day 14 Pre-dose (24 h post-dose)
Day 16 0 h
(Pre-dose, 24 h post-dose)
0.5
1
2
4
8
12
16
Day 17 24
36
Day 18 48
60
Throughout a period of 18 days a total of 26 samples per subject were drawn for PK.
Calculation of Pharmacokinetic Parameters
PK of minocycline was derived from plasma concentration versus time data. For purposes of calculating PK parameters, concentrations <LLQ were treated as zero. For purposes of tabular presentation and graphing mean profiles, concentration values <LLQ were treated as missing.
The PK parameters assessed included:
Cmax—Maximum plasma concentration achieved (dosing days 1 and 16).
AUCT—The area under the plasma concentration versus time curve in ng*mL/h.
The AUC from time zero to the last experimental time point (t*) with a detectable drug concentration equal to or greater than the limit of quantification value was designated AUCT and calculated by the linear trapezoidal rule (dosing days 1 and 16).
All calculated concentration values were electronically transferred. Individual subject PK parameter values were derived by non-compartmental methods by WinNonlin 6.3 within the Phoenix 64 software package. The peak plasma concentration (Cmax) was obtained from experimental observations.
FIG. 2 depicts the mean minocycline plasma concentrations from Day 1 to Day 16 for subjects who received FMX-101.
Results:
TABLE 72
FMX101-1 PK parameters PK Non-Compartmental
Analysis Summary Statistics (Day 1, Day 16)
Parameter Day 1 Day 16
Cmax [ng/mL] 2.26 ± 1.60 5.04 ± 6.19
AUCT [ng · h/mL] 33.83 ± 22.73 84.36 ± 48.36
Analysis:
In general, the observed minocycline plasma concentrations throughout the study were low and close to the sensitive lower limit of quantification (LLOQ=1.1 ng/mL).
The results of this study showed a very low absorption, with the Cmax (Day 16)=5 ng/mL, about 500 times lower than the Cmax and AUC for the labeled dose of the oral extended release minocycline, Solodyn® (100-135 mg, where the actual mg/kg dose corresponds to 1.07-0.99).
Similar PK studies for additional tetracycline antibiotics, such as doxycycline in one or more embodiments may be undertaken. For example, PK studies for doxycycline in formulations such as FDX104, DOX331, DOX332, DOD-003, and minocycline with adapalene MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058.
Doxycycline is generally regarded as non-toxic in short term treatment, as indicated by its oral acute toxicity of LD50=1007 mg/kg (mouse).
Chronic toxicity of doxycycline was evaluated in rats at oral doses up to 500 mg/kg/day for 18 months. Findings revealed no adverse effects on growth, food consumption, or survival.
Example 6 PK Study Results for Tetracycline Formulations
An open-label, single-center, study of the pharmacokinetics of daily applications of tetracycline formulations such as DOX331, DOX332, and DOD-003 doxycycline foam and MCD-037, MCD-045, MCD-052 MCD-053, MCD-065 and MCD-058 minocycline or doxycycline foam, is conducted for 16 consecutive days. Eligible subjects include males or females, 18 to 35 years of age, with or without papulopustular rosacea who are otherwise healthy. At least twelve subjects (preferably 6 male and 6 female), at least 9 of whom have varying degrees of papulopustular rosacea and 3 preferably without papulopustular rosacea, are enrolled to receive daily topical administration of tetracycline formulation, as indicated above. Subjects are admitted to the Clinical Research Center (CRC) in the evening before the first study drug administration (Day 0), and remain in-house for 24 hours after first dosing (Day 1). Throughout this day blood samples (6 mL) for determination of minocycline blood concentrations is drawn as follows:
Day 1: pre-dose (within 60 min before first dosing), 30 min, 1, 2, 4, 8, 12, 16 hours post-dose and Day 2 at 24 hrs post-dose within 10 min before second dosing—a total of 9 samples)
After receiving the second dose (Day 2) subjects are released from the CRC. Subjects then return to the CRC on the mornings of Days 3, 5, 7, 8, 9, 10, 11, 12, 14 and 15 (on Days 4, 6, and 13, subject applied the tetracycline formulation themselves). They remain in the CRC, with the application areas uncovered, for 30 min before being released. On Days 3, 7, 9, 11 and 14, blood is drawn as follows:
Days 3, 7, 9, 11 and 14: pre-dose (trough) samples, within 10 min before drug application
On the evening of Day 15 the subjects are re-admitted to the CRC. On Day 16 they receive the last (sixteenth) dose and undergo the same procedures as in Day 1 as follows:
Day 16: pre-dose (within 30 min before drug application), 30 min, 1, 2, 4, 8, 12, 16 hours post-dose
After being released from the CRC they are required to attend three additional blood samplings at 36, 48 and 60 hours post-dose as follows:
Day 17: 24 (±10 min) hours post-dose (before discharge from the CRC) and additional ambulatory sample at 36 (±15 min)
Day 18: 48 (±30 min) and 60 (±30 min) hours after last drug application.
Blood samples are analyzed using a validated method with a lower limit of quantification (LLQ) of 1 ng/mL. An End-of Study/Safety Follow-up visit took place on 7-10 days after last dose, which also included a dermatological assessment of response to treatment.
Results: The systemic exposure of a tetracycline foam as disclosed herein is equal to or lower than that of an orally administered tetracycline. There are no serious adverse events (AEs) and no withdrawals due to AEs.
Example 7 Compatibility Study
Procedure: Minocycline hydrochloride (“MCH”) was incubated as a suspension with various excipients at 25° C. and 40° C. for maximum of sixty days or to the point where degradation was suspected. The ratio between MCH and the tested excipient is detailed below. Visual inspection was the major criterion for indication of compatibility. The color of intact MCH suspension is pale yellow; and any change of color (e.g., to dark orange, red, green, brown and black) indicates oxidation or degradation.
Hydrophilic solvents were tested for compatibility with MCH at a ratio of MCH:excipient of 1:250. Dimethyl Isosorbide, Glycerin, Ethanol, Propylene glycol, Butylene Glycol, PEG 200, Hexylene Glycol, PEG 400, Dimethyl Sulfoxide and Diethylene glycol monoethyl ether were found to be incompatible with MCH.
Oily emollients and waxes were tested for compatibility with MCH at a ratio of MCH:excipient of 1:250 for oily emollients and 1:50 for waxes. Hydrogenated castor oil, Castor oil, Cocoglycerides, diisopropyl adipate, Mineral oil light, Coconut oil, Beeswax, MCT oil, Cyclomethicone, Isododecane, Cetearyl octanoate, Gelled mineral oil, Isopropyl myristate, PPG 15 stearyl ether, Mineral oil heavy, Octyl dodecanol, White Petrolatum, Petrolatum (Sofmetic), Paraffin 51-53, Paraffin 51-53, Paraffin 58-62, Calendula oil, Shea butter, Grape seed oil, Almond oil, Jojoba oil, Avocado oil, Peanut oil, Wheat germ oil and Hard Fat were found to be compatible with MCH. Pomegranate seed oil was found to be incompatible with MCH. Other than hydrogenated castor oil, beeswax, paraffin and hard fat, the aforesaid items listed are oily emollients.
The compatibility of MCH with hydrophobic surfactant was tested following solubilization of the surfactant in mineral oil (mineral oil was previously shown to be compatible with MCH). Surfactants were tested for compatibility with MCH at a ratio of MCH:excipient of 1:50. PEG 150 distearate, Laureth 4, PEG 40 hydrogenated castor oil, PEG 75 lanolin, Glucam P20 distearate, PEG 100 stearate, Glyceryl monostearate, PEG 40 stearate, Montanov S (Cocoyl Alcohol (and) C12-20 Alkyl Glucoside), Alkyl lactate, Benton gel, SPAN 60, Sorbitan sesquistearate, SPAN 40, SPAN 80, Tween 20, Ceteth 2, Sucrose stearic acid esters D1813, Ceteareth 20, Steareth 2/Steareth 21, Methyl glucose sesquistearate, Oleth 20, PPG 20 methyl glucose ether, Tween 60 were found to be incompatible with MCH. Sucrose stearic acid esters D1803, Sucrose stearic acid esters D1807 and Sucrose stearic acid esters D1811 were found to be compatible with MCH; however, not all of them dissolved in oil (e.g., 1811, 1813).
Foam adjuvants were tested for compatibility with MCH at a ratio of MCH:excipient of 1:50. Isostearyl alcohol, Behenyl alcohol, Stearyl alcohol, Cetyl alcohol, Oleyl alcohol, Myristyl alcohol, Cetostearyl alcohol, Palmitic acid, Stearic acid and Oleic acid were found to be compatible with MCH. Isostearic acid was not compatible with MCH.
Additives were tested for compatibility with MCH at a ratio of MCH:excipient of 1:50. Aerosil and Menthol were found to be compatible with MCH. Titanium dioxide and Ethocel were not compatible with MCH.
Additives were tested for compatibility with MCH. Minimal quantities of water (100 μL) were added to MCH, suspended in excipients that had demonstrated compatibility to examine whether water can enhance oxidation/degradation in the absence or presence of antioxidant. In parallel, antioxidants were added to the MCH suspensions comprising water. Antioxidants were also added to excipients which were found to be non-compatible with MCH. Addition of water caused prompt degradation of MCH. Addition of the antioxidants alpha-tocopherol, BHA/BHT and propyl gallate did not prevent MCH degradation. Compatible excipients became incompatible in the presence of water. Addition of antioxidants did not alter this result.
Doxycycline
A similar compatibility study was conducted for Doxycycline Hyclate and Doxycycline Monohydrate.
The physicochemical properties of these two forms of Doxycycline are similar to those of other tetracycline antibiotics with the exception of differences resulting from the presence of an H2O molecule in Doxycycline Monohydrate and an H2O molecule and two HCl molecules for every water molecule in Doxycycline Hyclate.
General properties of Doxycycline Hyclate and Doxycycline Monohydrate:
Doxycycline Hyclate
1. Doxycycline Hyclate is a broad-spectrum antibiotic synthetically derived from oxytetracycline.
2. Doxycycline hyclate is a yellow crystalline powder soluble in water and in solutions of alkali hydroxides and carbonates.
3. Doxycycline hyclate has a high degree of lipid solubility and a low affinity for calcium binding.
Doxycycline Monohydrate
1. Doxycycline monohydrate is a broad-spectrum antibiotic synthetically derived from oxytetracycline.
2. The chemical designation of the light-yellow crystalline powder is alpha-6-deoxy-5-oxytetracycline.
The major degradative pathways for both types of Doxycycline are carbon-4 epimerization and oxidative processes.
Doxycycline is a member of the tetracycline antibiotics group and is commonly used to treat a variety of infections, particularly effective in treating acne condition.
Different compositions of hydrophilic and hydrophobic solvents containing Doxycycline Hyclate (Set I and Set II) and Doxycycline Monohydrate (Set III) were prepared by weighing the antibiotic in a glass vial and shaking overnight with each solvent investigated. Mixtures of Doxycycline salts 1.04% w/w with solid excipients were prepared in a similar way as for Minocycline HCl. The results are presented in Tables 22A-26.
TABLE 73A
Doxycycline Hyclate Compatibility Test (Group I)
Mixtures of 1.04% w/w of Doxycycline Hyclate stored at 25° C., 40° C. and 50° C. for two weeks
Ingredients
PPG-15
stearyl Propylene Diisopropyl
Group I Cyclomethicone ether Octyldodecanol Mineral oil glycol Glycerol PEG 200 PEG 400 MCT oil adipate
Visual White White White White Light Light Light Light White White
inspection liquid and liquid and liquid and liquid and yellow yellow yellow yellow liquid and liquid and
at T-0 yellow yellow yellow yellow solution solution solution solution yellow yellow
powder powder powder powder powder powder
sedim. sedim. sedim. sedim. sedim. sedim.
Visual White White White White Light Light Light Light White White
inspection liquid and liquid and liquid and liquid and yellow yellow yellow yellow liquid and liquid and
after the yellow yellow yellow yellow solution solution solution solution yellow yellow
storage at powder powder powder powder powder powder
25° C. sedim. sedim. sedim. sedim. sedim. sedim.
Visual White White Light White Yellow brownish Brown Orange White White
inspection liquid and liquid and orange liquid and solution Yellow solution solution liquid and liquid and
after the yellow yellow solution yellow solution yellow yellow
storage at powder powder powder powder powder
40° C. sedim. sedim. sedim. sedim. sedim.
Visual White White Orange White Brownish Light Orange Orange White White
inspection liquid and liquid and solution liquid and orange brown solution solution liquid and liquid and
after the yellow yellow yellow solution solution yellow yellow
storage at solution powder solution powder powder
50° C. powder sedim. powder sedim. sedim.
sedim. sedim.
Compatibility Compat. Compat. Non Compat. Non Non Non Non Compat. Compat
Results no no compat. no no compat. compat. compat. compat. no no
after the oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation
storage
TABLE 73B
Doxycycline Hyclate Compatibility Test (Group I) (continued)
Mixtures of 1.04% w/w of Doxycycline Hyclate stored at 25° C.,
40° C. and 50° C. for two weeks
Ingredients
Cetearyl Hexylene Butylene Sorbitan Dimethyl
Group I octanoate glycol glycol Monolaurate Isosorbide
Visual inspection bright yellow bright yellow bright yellow bright yellow yellow
at T-0 solution solution solution mixture solution
Visual inspection bright yellow bright yellow bright yellow Brown Yellow
after the storage solution solution solution solution solution
at 25° C.
Visual inspection bright yellow light yellow Light orange Brown Brownish
after the storage solution solution solution solution orange
at 40° C.
Visual inspection White liquid Light yellow Light orange Black Orange
after the storage and yellow liquid and solution solution solution
at 50° C. powder sedim. yellow powder
sedim.
Compatibility Compat. Compat. Non compat. Non compat. Non compat.
Results no oxidation no oxidation oxidation oxidation Oxidation
Group II included Doxycycline Hyclate mixed with various vehicles with addition of antioxidants like alpha tocopherol, butylated hydroxytoluene (BHT), and ascorbic acid.
TABLE 74
Doxycycline Hyclate Compatibility Test (Group II)
Mixtures of 1.04% w/w of Doxycycline Hyclate stored at 25° C.,
40° C. and 50° C. for two weeks
Ingredients
Ethanol 95%, Propylene glycol, PEG 200,
Ethanol 95% BHT and alpha tocopherol alpha tocopherol
Group II Ethanol 95% and BHT ascorbic acid and ascorbic acid and ascorbic acid
Visual inspection bright yellow bright yellow bright yellow bright yellow bright yellow
at T-0 solution solution solution solution solution
Visual inspection bright yellow bright yellow Yellow bright yellow Yellow
after the storage solution solution solution solution solution
at 25° C.
Visual inspection bright yellow bright yellow Yellow Light orange Orange
after the storage solution solution solution solution solution
at 40° C.
Visual inspection bright yellow bright yellow Orange Light orange Brownish orange
after the storage solution solution solution solution solution
at 50° C.
Compatibility compatible. compatible Non compatible. Non compatible. non compatible.
Results no oxidation no oxidation Oxidation oxidation Oxidation
TABLE 75
Doxycycline Hyclate Compatibility Test (Group III)
Mixtures of 1.04% w/w of Doxycycline Hyclate stored at 25° C., 40° C. and 50° C. for 3 days
Ingredients
Myristyl
Steareth
20 Hydrogenated alcohol and
Isostearic Oleyl and Castor Stearyl PEG 40 PEG 100 Sorbitan
Group II Acid alcohol Steareth 2 Oil alcohol Stearate Stearate Monostearate Cocoglycerides
Visual inspection Yellow Yellow Yellow Yellow Yellow Yellow Yellow Yellow Yellow
at T-0 suspen suspen suspen suspen suspen suspen suspen suspen suspen
Visual inspection Yellow Yellow Yellow Yellow Yellow Yellow Yellow Yellow Yellow
after the storage suspen suspen suspen suspen suspen suspen. suspen suspen suspen
at 25° C.
Visual inspection Yellow Yellow Brown Yellow Yellow Brown Yellow Yellow Yellow
after the storage suspen suspen suspen suspen suspen suspen suspen suspen suspen
at 40° C.
Visual inspection Yellow Yellow Brown Yellow Yellow Brown Yellow Yellow Light
after the storage suspen suspen suspen suspen suspen suspen suspen suspen brown
at 50° C. powder
Compatibility Compat.. Compat. Non Compat. Compat. Non Compat.. Compat. Non
Results no No compat. No No Compat. No No Compat.
oxidation oxidation Oxidation oxidation oxidation oxidation oxidation oxidation oxidation
Suspen.—suspension;
compat—compatible
A similar compatibility test was performed on another form of Doxycycline—Doxycycline Monohydrate. The results are presented in Tables 25A, 25B, and 26.
TABLE 76A
Doxycycline Monohydrate Compatibility Test (Group I)
Mixtures of 1.04% w/w of Doxycycline Monohydrate stored at 25° C., 40° C., and 50° C. for two weeks
Ingredients
PPG-15
stearyl Propylene Diisopropyl
Group I Cyclomethicone ether Octyldodecanol Mineral oil glycol Glycerol PEG 200 PEG 400 MCT oil adipate
Visual White White White White Light yellow yellow Dark White White
inspection liquid and liquid and liquid and liquid and yellow solution solution yellow liquid and liquid and
at T-0 yellow yellow yellow yellow solution solution yellow yellow
powder powder powder powder powder powder
sedim. sedim. sedim. sedim. sedim. sedim.
Visual White White White White Orange yellow Yellowish Yellowish White White
inspection liquid and liquid and liquid and liquid and solution solution black brown liquid and liquid and
after the yellow yellow yellow yellow solution solution yellow yellow
storage at powder powder powder powder powder powder
25° C. sedim. sedim. sedim. sedim. sedim. sedim.
Visual White Yellowish orange White Black black Black Brown White White
inspection liquid and orange solution liquid and solution solution solution solution liquid and liquid and
after the yellow mixture yellow yellow yellow
storage at powder powder powder powder
40° C. sedim. sedim. sedim. sedim.
Visual White Yellowish Orange White black black Black Black Dirty Brown
inspection liquid and orange solution liquid and solution solution solution solution yellow mixture
after the yellow mixture yellow
storage at powder powder
50° C. sedim. sedim.
Compatibility Compat. Non Non Compat. Non Non Non Non Non Non
Results no compat. compat. no compat. compat. compat. compat. compat. compat.
after the oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation oxidation
storage
TABLE 76B
Doxycycline Monohydrate Compatibility Test (Group I) (continued)
Mixtures of 1.04% w/w of Doxycycline Monohydrate stored at 25° C.,
40° C., and 50° C. for two weeks
Ingredients
Cetearyl Hexylene Butylene Sorbitan Dimethyl
Group I octanoate glycol glycol Monolaurate Isosorbide
Visual White liquid White liquid White liquid Brown yellow
inspection and yellow and yellow and yellow mixture solution
at T-0 powder sedim. powder sedim. powder sedim.
Visual White liquid bright Orange orange orange
inspection and yellow yellow solution solution solution
after the powder sedim. solution
storage at
25° C.
Visual White liquid Brownish Brownish Brown orange
inspection and yellow black black solution solution
after the powder sedim. solution solution
storage at
40° C.
Visual White liquid Black black brown Orange
inspection and yellow solution. solution solution solution
after the powder sedim.
storage at
50° C.
Compatibility compat. Non compat. Non compat. Non compat. non compat.
Results no oxidation oxidation Oxidation oxidation Oxidation
TABLE 77
Doxycycline Monohydrate Compatibility Test (Group II)
Mixtures of 1.04% w/w of Doxycycline Monohydrate stored at 25° C.,
40° C., and 50° C. for two weeks
Ingredients
Ethanol 95%, Propylene glycol, PEG 200,
Ethanol 95% BHT and alpha tocopherol alpha tocopherol
Group II Ethanol 95% and BHT ascorbic acid and ascorbic acid and ascorbic acid
Visual inspection bright yellow bright yellow bright yellow bright yellow bright yellow
at T-0 solution solution solution solution solution
Visual inspection Brown Brown orange Yellowish Yellow
after the storage solution solution solution orange solution
at 25° C. solution
Visual inspection Brown Brown Orange Orange Dark
after the storage solution solution solution solution yellow
at 40° C. solution
Visual inspection Black Black Black Brownish orange Brown orange
after the storage solution solution solution solution solution
at 50° C.
Compatibility Non compatible. Non compatible Non compatible. Non compatible. non compatible.
Results oxidation oxidation Oxidation oxidation Oxidation
Interesting and unexpected phenomena were found during the compatibility studies of Minocycline HCl, Doxycycline Hyclate and Doxycycline Monohydrate:
1. While minocycline displayed intensive oxidation on dissolution in glycerol, the antibiotic surprisingly revealed full compatibility with octyldodecanol, a branched chain fatty alcohol. Both molecules have similar hydroxyl units in their structures.
2. Doxycycline Hyclate and Monohydrate unexpectedly revealed different compatibility with excipients. For example, Doxycycline Hyclate was stable in a mixture with PPG-15 Stearyl Ether. Surprisingly, the Doxycycline Monohydrate was found to be non-compatible with PPG-15 Stearyl Ether during the storage at 40° C. and 50° C. for two weeks.
3. Doxycycline Hyclate was stable in a mixture with ethanol 95% and hexylene glycol. Doxycycline Monohydrate oxidized in similar mixtures.
4. Unexpectedly, addition of strong anti-oxidants like alpha-tocopherol and ascorbic acid did not prevent the oxidation of any of Minocycline HCl, Doxycycline Hyclate and Monohydrate in a waterless medium of propylene glycol and PEG 200.
5. Surprisingly, Doxycycline Hyclate revealed stability in Ethanol 95% following the storage at 40° C. and 50° C. for two weeks although both Minocycline HCl and Doxycycline Monohydrate changed their color from yellow to orange upon dissolution in Ethanol 95%.
6. In conclusion, the following non predictable substances were found to be compatible with Minocycline and Doxycycline:
TABLE 78
Summary of MCH and DOX compatibility studies
Compatibility tested after the storage for up to 3 weeks
Minocycline Doxycycline Doxycycline
Ingredient HCl Hyclate Monohydrate Comments
Cyclomethicone 5 NF Yes Yes Yes All
compatible
PPG-15 Stearyl Ether Yes Yes No
Octyldodecanol Yes No No
Mineral Oil Yes Yes Yes All
compatible
Propylene Glycol No No No
Glycerol No No No
PEG 200 No No No
PEG 400 No No No
MCT Oil Yes Yes No
Diisopropyl adipate Yes Yes No
Ethanol 95% No Yes No
Isostearic acid No Yes Not tested
Oleyl alcohol Yes Yes Not tested
Steareth 20 (Polyoxyl 20 No No Not tested
Stearyl Ether)
Steareth 2(Polyoxyl 2 No No Not tested
Stearyl Ether)
Methyl glycose No Not tested Not tested
sesquistearate (MGSS)
Aluminum Starch Yes Not tested Not tested
Octenylsuccinate(ASOS)
Cetearyl octanoate Yes Yes Yes All
compatible
Hydrogenated Castor Oil Yes Yes Not tested
Stearyl alcohol Yes Yes Not tested
Myristyl alcohol Yes Yes Not tested
Titanium Dioxide Yes Not tested Not tested
PEG 40 stearate Yes No Not tested
PEG 100 Stearate Yes Yes Not tested
Sorbitan Monostearate Yes Yes Not tested
Cocoglycerides Yes No Not tested
Coconut Alcohol Yes Not tested Not tested
Hexylene glycol No Yes No
Butylene glycol No No No
Sorbitan Monolaurate No No No
Dimethyl Isosorbide No No No
Titanium dioxide Yes Not tested Not tested
Methyl glycose No Not tested Not tested
sesquistearate (MGSS)
Aluminum Starch Yes Not tested Not tested
Octenylsuccinate(ASOS)
Coconut alcohol Yes Not tested Not tested
7. As could be seen from Table 76, not all of the ingredients compatible with MCH are compatible with Doxycycline Hyclate or Monohydrate. For example, octyldodecanol is compatible with Minocycline HCl but revealed incompatibility with Doxycycline Hyclate and Monohydrate. Surprisingly, there are discrepancies in the list of ingredients compatible with Doxycycline Hyclate and Doxycycline Monohydrate: for example, PPG-15 Stearyl Ether is compatible with Doxycycline Hyclate and non-compatible with Doxycycline Monohydrate.
8. The data presented herein could be used for selection of active materials from tetracycline family for topical formulations. A list of ingredients that were found to be compatible with MCH and DOX could be applied to other antibiotics from the tetracycline family. The following ingredients are suitable for topical formulations: mineral oil, cyclomethicone, cetearyl octanoate. Few ingredients are compatible with both forms of doxycycline and are also compatible with minocycline.
Example 8 Phase II Study for Papulopustular Rosacea
A double-blind, randomized, placebo-controlled Phase 2 trial has been carried out involving 233 patients who were enrolled in 18 sites throughout Germany. Patients were randomized (1:1:1) to receive high dose FMX103 (3% minocycline foam), low dose FMX103 (1.5% minocycline foam) or vehicle foam once daily (in the evening) over 12 weeks, followed up by a 4-week post-treatment evaluation. However, one subject in the 3% group did not receive treatment and was not included in the intent to treat analysis. The study medication, dosage, inclusion/exclusion criteria, and design generally followed those outlined in Example 3 above, with the inclusion criteria of healthy males or non-pregnant female aged over 18, having at least 12 papules and/or pustules for more than 6 months, and having the Investigator's Global Assessment (IGA) scores moderate to severe. The mean age of the study participants was 52.5 and 63% of the participants were female (see Table 79A and B). The efficacy endpoints were the absolute change in the number of inflammatory facial lesions (papules and pustules (primary endpoint)), improvement of the IGA of severity at 12 weeks compared to baseline (first secondary endpoint), and percent change in inflammatory lesion count at week 12 compared to baseline (second secondary endpoint). IGA score improvement by 2 or more grades and reaching an IGA score of 0 (“clear”) or 1 (“almost clear”) were considered successful. Safety and tolerability in the treatment of moderate to severe papulopustular rosacea were also evaluated. Safety and efficacy evaluations were performed at week 2, 4, 8, and 12, with an additional safety follow-up visit at week 16.
TABLE 79A
Summary of Analysis Populations by Treatment
Minocycline Minocycline
1.5% 3% Vehicle Overall
n (%) n (%) n (%) n (%)
Screened 79 76 78 233
Randomized 79 76 78 233
Randomized but not treateda  0  1  0  1
Intent-to-Treat Populationb,c 79 (100.0) 75 (98.7) 78 (100.0) 232 (99.6)
Per-Protocol Populationb,d 72 (91.1) 63 (82.9) 69 (88.5) 204 (87.6)
Excluded from the Per-Protocol Populatione 7 (8.9) 13 (17.1) 9 (11.5) 29 (12.4)
Not in ITT population  0 1 (1.3)  0 1 (0.4)
Discontinued from the study 2 (2.5) 10 (13.2) 7 (9.0) 19 (8.2)
Had major deviations from protocol 5 (6.3) 2 (2.6) 2 (2.6) 9 (3.9)
Safety Population 79 (100.0) 75 (98.7) 78 (100.0) 232 (99.6)
aSubject was randomized in error. Baseline inflammatory lesion count was 7, below inclusion criteria of 12. Subject was not dispensed study drug and was not included in the intent-to-treat population. Incomplete baseline assessment was done.
bPercentages are based on the number of subjects randomized.
cIncludes all randomized subjects.
dIncludes all ITT subjects without any major deviations from the protocol.
eSubjects may be excluded for more than one reason.
TABLE 79 B
Summary of Demographics and Baseline Characteristics by Treatment - ITT Population
Minocycline Minocycline
1.5% 3% Vehicle Overall
Parameter (N = 79) (N = 75) (N = 78) (N = 232)
Mean Age years (range)
Range 21-82 22-78 24-80 21-82
Mean (SD) 51.2 (15.26) 51.6 (14.15) 54.8 (14.05) 52.5 (14.53)
Median 51.0 52.0 53.5 52.0
Age Categories (years), [n (%)]
18-30 13 (16.5) 7 (9.3) 5 (6.4) 25 (10.8)
31-50 25 (31.6) 28 (37.3) 27 (34.6) 80 (34.5)
>50 41 (51.9) 40 (53.3) 46 (59.0) 127 (54.7)
Sex, [n (%)]
Male 26 (32.9) 24 (32.0) 37 (47.4) 87 (37.5)
Female 53 (67.1) 51 (68.0) 41 (52.6) 145 (62.5)
Race, [n (%)]
Caucasian 98.7 97.3 100.0  98.7
Othera  1.3  2.7 0   1.3
Female of Childbearing Potential (Females only), [n (%)]
Yes 29 (54.7) 21 (41.2) 18 (43.9) 68 (46.9)
No 24 (45.3) 30 (58.8) 23 (56.1) 77 (53.1)
IGA of rocasea,b %
Moderate (IGA = 3) 43.0 38.7 51.3 44.4
Severe (IGA = 4) 57.0 61.3 48.7 55.6
Mean range) total inflammatory lesion 34.5 13-125) 34.1 12-186) 30.6 12-91) 33.1 12-186)
count
aFMX-103 1.5% n = 1 Other; FMX-103 3%: n = 1 American Indian or Alaska Native, n = 1 Native Hawaiian or Other Pacific Islander.
bIGA grading for rosacea: 0 = clear; 1 = almost clear; 2 = mild; 3 = moderate; 4 = severe.
STUDY BASELINE. The mean baseline lesion count for all groups ranged from 30.6 to 34.5 and the IGA scores were all moderate (score 3) or severe (score 4), with about 50% to about 60% of the subjects having a severe rating (Table 80A and C). Table 80B summarizes the IGA score system.
TABLE 80A
Summary of Subject Disposition by Treatment - ITT Population
Minocycline Minocycline
1.5% 3% Vehicle Overall
(N = 79) (N = 75) (N = 78) (N = 232)
Completion Status n (%) n (%) n (%) n (%)
Treated (at least one treatment) 79 (100.0) 75 (100.0) 78 (100.0) 232 (100.0)
Completed at least 4 weeks of Treatment 76 (96.2) 68 (90.7) 73 (93.6) 217 (93.5)
Completed 12 weeks of Treatment 74 (93.7) 60 (80.0) 67 (85.9) 201 (86.6)
Completed Treatment and Follow-upa 73 (92.4) 60 (80.0) 67 (85.9) 200 (86.2)
Discontinued 2 (2.5) 10 (13.3) 7 (9.0) 19 (8.2)
Adverse Event 0 3 (4.0) 1 (1.3) 4 (1.7)
Abnormal Laboratory Result 0 0 0 0
Lost to Follow-up 1 (1.3) 0 0 1 (0.4)
Subject Request 1 (1.3) 6 (8.0) 3 (3.8) 10 (4.3)
Protocol Deviation 0 1 (1.3) 1 (1.3) 2 (0.9)
Specific Medical Reasons 0 0 0 0
Other 0 0 2 (2.6) 2 (0.9)
aIncludes subjects who completed 12 weeks of treatment and had the follow-up visit.
TABLE 80B
IGA grading scale for papulopustular rosacea
Grade Score Description
Clear
0 No inflammatory papules or pustules
Almost 1 1 or 2 inflammatory papules or pustules
clear
Mild 2 3 to 11 inflammatory papules or pustules
Moderate 3 12 to 19 inflammatory papules or pustules and
no nodules
Severe 4 ≥20 inflammatory papules or pustules, and up
to 2 nodules
IGA = Investigator's Global Assessment.
TABLE 80C
Summary of Baseline Rosacea IGA and Total Inflammatory
Lesion Count by Treatment - ITT Population
Minocycline Minocycline
1.5% 3% Vehicle Overall
Parameter (N = 79) (N = 75) (N = 78) (N = 232)
Investigator Global Assessment (IGA) of Rosacea, [n (%)]
Clear 0 0 0 0
Almost Clear 0 0 0 0
Mild 0 0 0 0
Moderate 34 (43.0) 29 (38.7) 40 (51.3) 103 (44.4)
Severe 45 (57.0) 46 (61.3) 38 (48.7) 129 (55.6)
Total Inflammatory Lesion Count
Mean (SD) 34.5 (20.89) 34.1 (24.99) 30.6 (15.48) 33.1 (20.74)
Median  28.0  27.0  26.0  27.5
Min, Max 13, 125 12, 186 12, 91 12, 186
RESULTS: 232 subjects were randomized and received at least one dose of study drug (ITT population). 201 (86.6%) subjects completed 12 weeks of treatment and the follow-up visit. Statistically significant improvement vs. vehicle in the two most important measurements of efficacy was demonstrated for both FMX-103 doses. At the week 12 time point, designated for the primary end point analysis, both the 1.5% and 3% doses of FMX103 significantly reduced the absolute number of papules and pustules vs. the vehicle (1.5% and 3%, both p<0.001, ANCOVA, intent-to-treat analysis). The mean reduction in inflammatory lesion count (absolute change) of each treatment group vs. its baseline was 21.1 for the 1.5% dose, 19.9 for the 3% dose, and 7.8 for vehicle (FIG. 1A; Table 81A). The corresponding percent reductions were 61.4% and 55.5% for the FMX103 1.5% and 3% groups, respectively, and 29.7% for the vehicle (1.5% and 3%, both p<0.001, ANCOVA, intent-to-treat analysis). (FIG. 1B; Table 81A). A significant reduction in the mean lesion count was observed as early as week 2 for both 1.5% and 3% doses of FMX103 vs. the vehicle (1.5% and 3%, p<0.01, p<0.05 respectively ANCOVA, intent-to-treat analysis). The mean reduction in inflammatory lesion count (absolute change) of each treatment group vs. its baseline was 10.9 for the 1.5% dose, 9 for the 3% dose, and 4 for vehicle. (see FIG. 1A; Table 81B). The corresponding percent reductions were 30% and 26% for the FMX103 1.5% and 3% groups, respectively, and 16% for the vehicle (1.5% p<0.01, ANCOVA, intent-to-treat analysis) (see FIG. 1B; Table 81C).
TABLE 81A
Summary of Percent and Absolute Change from Baseline in
Inflammatory Lesion Count at Week 12 by Treatment in the
Intent-to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
1.5% 3% Vehicle
Parameter (N = 79) (N = 75) (N = 78)
Baseline
N 79 75 78
Mean (SD) 34.5 (20.89) 34.1 (24.99) 30.6 (15.48)
Median 28.0 27.0 26.0
Min, Max 13, 125 12, 186  12, 91
Week 12
N 79 75 78
Mean (SD) 13.4 (13.96) 14.2 (12.44) 22.8 (22.21)
Median 9.0 12.9 16.8
Min, Max 0, 90 0, 57   0, 154
Percent Change from Baseline (%)
N 79 75 78
Mean (SD) −61.4 (32.29) −55.5 (31.38) −29.7 (46.34)
Median −69.6 −60.9 −37.8
Min, Max −100.0, 44.4   −100.0, 11.2   −100.0, 165.5
LSMean (SE)a −64.5 (4.55) −58.5 (4.94) −32.0 (4.83)
P-valuea <0.001 <0.001
Absolute Change from Baseline
N 79 75 78
Mean (SD) −21.1 (17.79) −19.9 (20.38) −7.8 (17.37)
Median −17.0 −14.0 −8.0
Min, Max −95, 12  −129, 2   −44, 96
LSMean (SE)a −21.2 (1.68) −20.3 (1.75) −9.9 (1.80)
P-valuea <0.001 <0.001
Interaction P-valueb: 0.665 <0.001 <0.001
Homogeneity P-valuec: 0.267
Normality P-valued: <0.001
Non-parametric ANCOVA P-valuee
aFrom an analysis of covariance with main effect of treatment and covariates of baseline and pooled site. P-value is the test result for treatment effect versus vehicle.
bP-value for treatment by pooled site, based on analysis of covariance on unimputed data with effects of treatment, baseline, and pooled site, and treatment by pooled site interaction.
cFrom Levene's test on unimputed data.
dFrom Shapiro-Wilk test on unimputed data.
eFrom a non-parametric ANCOVA with effects of treatment, baseline, and pooled site.
TABLE 81B
Summary of Absolute Change from Baseline in Inflammatory
Lesion Count Visits 2, 4 and 8 by Treatment in the Intent-
to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
Visit 1.5% 3% Vehicle
Parameter (N = 79) (N = 75) (N = 78)
Baseline
N 79 75 78
Mean (SD) 34.5 (20.89) 34.1 (24.99) 30.6 (15.48)
Median 28.0 27.0 26.0
Min, Max 13, 125  12, 186  12, 91
Week 2
N 79 75 78
Mean (SD) 23.6 (15.20) 25.2 (21.14) 26.7 (17.83)
Median 21.0 19.0 23.5
Min, Max 0, 74   2, 152   1, 103
Week 2 Change from Baseline
N 79 75 78
Mean (SD) −10.9 (14.71) −9.0 (14.57) −4.0 (10.95)
Median −8.0 −7.0 −4.0
Min, Max −75, 31  −82, 24 −30, 59
LSMean −11.2 (1.36) −9.2 (1.40) −5.3 (1.37)
(SE)a
P-valuea 0.002 0.038
Week 4
N 79 75 78
Mean (SD) 19.8 (16.14) 19.3 (19.72) 25.1 (16.38)
Median 14.0 15.0 21.0
Min, Max 0, 76   1, 148  0, 81
Week 4 Change from Baseline
N 79 75 78
Mean (SD) −14.8 (16.40) −14.8 (15.00) −5.5 (9.06)
Median −13.0 −12.0 −7.0
Min, Max −81, 29  −84, 20 −22, 23
LSMean −14.6 (1.36) −14.7 (1.42) −6.6 (1.36)
(SE)a
P-valuea <0.001 <0.001
Week 8
N 79 75 78
Mean (SD) 16.0 (14.51) 15.2 (15.30) 23.1 (17.60)
Median 11.2 11.0 18.5
Min, Max 0, 79  0, 96  0, 86
Week 8 Change from Baseline
N 79 75 78
Mean (SD) −18.5 (17.71) −18.9 (17.60) −7.6 (13.45)
Median −16.0 −17.0 −8.4
Min, Max −85, 29  −90, 16 −39, 32
LSMean −18.4 (1.46) −19.0 (1.52) −9.3 (1.49)
(SE)a
P-valuea <0.001 <0.001
aFrom an analysis of covariance with main effect of treatment and covariates of baseline and pooled site. P-value is the test result for treatment effect versus vehicle.
TABLE 81C
Summary of Percent Change from Baseline in Inflammatory
Lesion Count Visits 2, 4 and 8 by Treatment in the Intent-
to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
Visit 1.5% 3% Vehicle
Parameter (N = 79) (N = 75) (N = 78)
Baseline
N 79 75 78
Mean (SD) 34.5 (20.89) 34.1 (24.99) 30.6 (15.48)
Median 28.0 27.0 26.0
Min, Max 13, 125  12, 186 12, 91 
Week 2
N 79 75 78
Mean (SD) 23.6 (15.20) 25.2 (21.14) 26.7 (17.83)
Median 21.0 19.0 23.5
Min, Max 0, 74   2, 152  1, 103
Week 2 Percent Change from Baseline (%)
N 79 75 78
Mean (SD) −30.0 (34.05) −25.9 (31.68) −15.8 (32.54)
Median −29.6 −29.2 −16.7
Min, Max −100.0, 114.8   −87.2, 104.3 −91.7, 134.1 
LSMean −32.1 (3.83) −27.5 (3.93) −17.3 (3.90)
(SE)a
P-value3 0.005 0.053
Week 4
N 79 75 78
Mean (SD) 19.8 (16.14) 19.3 (19.72) 25.1 (16.38)
Median 14.0 15.0 21.0
Min, Max 0, 76   1, 148 0, 81
Week 4 Percent Change from Baseline (%)
N 79 75 78
Mean (SD) −42.9 (37.25) −44.1 (28.20) −20.1 (33.68)
Median −46.7 −46.0 −19.8
Min, Max −100.0, 107.4  −94.4, 32.8 −100.0, 100.0
LSMean −44.5 (3.95) −45.5 (4.14) −20.9 (3.97)
(SE)a
P-valuea <0.001 <0.001
Week 8
N 79 75 78
Mean (SD) 16.0 (14.51) 15.2 (15.30) 23.1 (17.60)
Median 11.2 11.0 18.5
Min, Max 0, 79   0, 96 0, 86
Week 8 Percent Change from Baseline (%)
N 79 75 78
Mean (SD) −53.3 (36.17) −53.8 (34.33) −26.3 (37.78)
Median −63.6 −58.1 −28.3
Min, Max −100.0, 107.4  −100.0, 71.4  −100.0, 69.7  
LSMean −54.9 (4.36) −55.2 (4.54) −27.5 (4.41)
(SE)a
P-valuea <0.001 <0.001
aFrom an analysis of covariance with main effect of treatment and covariates of baseline and pooled site. P-value is the test result for treatment effect versus vehicle.
Moreover, treatment resulted in significant improvement in IGA scores (FIGS. 2A and 2B; Tables 82A and 82B). Both the 1.5% and 3% doses of FMX-103 were significantly better compared to vehicle in reducing the IGA score by 2 grades and in reaching a “clear” (score=0) or “almost clear” (score=1) rating at Week 12, Both the 1.5% and 3% doses were efficacious and there was no statistically significant difference between the two minocycline doses.
The results indicate that both the 1.5% and 3% doses of FMX-103 were significantly better than the vehicle in improving IGA scores by at least 2 grades at Week 12 (p=0.002 and p=0.032, respectively FIG. 2A, Table 82B). Both active doses of FMX-103 were also significantly better than the vehicle in improving the IGA scores by at least 2 grades and achieving an IGA score of “clear” (score=0) or “almost clear” (score=1) at Week 12 (p=0.001 and p=0.041 for 1.5% and 3% FMX-103, respectively FIG. 2B, Table 82B).
The percent of subjects with improvement of IGA score by 2 grades at Week 12 was 41.8% and 33.3% for the FMX103 1.5% and 3% groups, respectively, and 17.9% for the vehicle (P<0.01 and P<0.05, respectively, Cochran-Mantel-Haenszel test). FIG. 2A; Tables 82A)
The percent of subjects with improvement of IGA score by 2 grades and in reaching a “clear” (score=0) or “almost clear” (score=1) at Week 12 was 25.3% and 17.3% for the FMX103 1.5% and 3% groups, respectively, and 7.7% for the vehicle (P<0.01 and P<0.05, respectively, Cochran-Mantel-Haenszel test FIG. 2B; Tables 82B)
Both the 1.5% and 3% doses of FMX-103 were significantly better compared to vehicle in reducing the IGA score by 2 grades as early as Week 4 (P<0.001 and P<0.01, respectively, Cochran-Mantel-Haenszel test FIG. 2A; Tables 82C). The percent improvement of IGA score by 2 grades at Week 4 was 20.3% and 18.7% for the FMX103 1.5% and 3% groups, respectively, and 2.6% for the vehicle.
Both the 1.5% and 3% doses of FMX-103 were significantly better compared to vehicle in reducing the IGA score by 2 grades resulting in “clear” or “almost clear” as early as Week 8 (P<0.01 and P<0.05, respectively, Cochran-Mantel-Haenszel test FIG. 2B; Table 82D). The percent improvement of IGA score by 2 grades at Week 8 was 16.5% and 14.7% for the FMX103 1.5% and 3% groups, respectively, and 3.8% for the vehicle.
TABLE 82A
Summary of Investigator Global Assessment (IGA) 2-Level
Improvement from Baseline to Week 12 by Treatment in the
Intent-to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
1.5% 3% Vehicle
(N = 79) (N = 75) (N = 78)
Parameter n (%) n (%) n (%)
Baseline
Clear 0 0 0
Almost Clear 0 0 0
Mild 0 0 0
Moderate 34 (43.0) 29 (38.7) 40 (51.3)
Severe 45 (57.0) 46 (61.3) 38 (48.7)
Week 12
Clear 7 (8.9) 2 (2.7) 1 (1.3)
Almost Clear 13 (16.5) 11 (14.7) 5 (6.4)
Mild 29 (36.7) 26 (34.7) 25 (32.1)
Moderate 12 (15.2) 17 (22.7) 18 (23.1)
Severe 18 (22.8) 19 (25.3) 29 (37.2)
Severe Cases Change 60% 58.7% 23.7%
Change from Baseline
Improvement observed 58 (73)   53 (70.66) 35 (45)  
Improved by 4 Levels 1 (1.3) 0 0
Improved by 3 Levels 10 (12.7) 6 (8.0) 1 (1.3)
Improved by 2 Levels 22 (27.8) 19 (25.3) 13 (16.7)
Improved by 1 Level 25 (31.6) 28 (37.3) 21 (26.9)
No Improvement 21 (26.6) 20 (26.7) 40 (51.3)
Worsened by 1 Level 0 2 (2.7) 3 (3.8)
Worsened by 2 Levels 0 0 0
Improved at Least 2 33 (41.8) 25 (33.3) 14 (17.9)
Levels
Did Not Improve at 46 (58.2) 50 (66.7) 64 (82.1)
Least 2 Levels
P-valuea 0.002 0.032
Investigator Global Assessment (IGA) scores are 0-4 (Clear to Severe)
aFrom a CMH test stratified by pooled site. Only treatment groups being compared included in the analysis.
TABLE 82B
Summary of Investigator Global Assessment (IGA) 2-
Level Improvement that Results in Clear or Almost
Clear from Baseline to Week 12 by Treatment Intent-
to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
Clear or Almost 1.5% 3% Vehicle
Clear and Improved (N = 79) (N = 75) (N = 78)
at Least 2 Levels n (%) n (%) n (%)
Yes 20 (25.3) 13 (17.3) 6 (7.7)
No 59 (74.7) 62 (82.7) 72 (92.3)
P-Valuea 0.001 0.041
Investigator Global Assessment (IGA) scores are 0-4 (Clear to Severe)
aFrom a CMH test stratified by pooled site. Only treatment groups being compared included in the analysis.
TABLE 82C
Summary of Investigator Global Assessment (IGA) 2-Level Improvement
from Baseline Visits 2, 4 and 8 and Treatment in the Intent-
to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
1.5% 3% Vehicle
Visit (N = 79) (N = 75) (N = 78)
Parameter n (%) n (%) n (%)
Baseline
Clear 0 0 0
Almost Clear 0 0 0
Mild 0 0 0
Moderate 34 (43.0) 29 (38.7) 40 (51.3)
Severe 45 (57.0) 46 (61.3) 38 (48.7)
Week 2
Clear 1 (1.3) 0 0
Almost Clear 1 (1.3) 2 (2.7) 2 (2.6)
Mild 19 (24.1) 15 (20.0) 12 (15.4)
Moderate 23 (29.1) 27 (36.0) 32 (41.0)
Severe 35 (44.3) 31 (41.3) 32 (41.0)
Week 2 Change from Baseline
Improved by 4 Levels 0 0 0
Improved by 3 Levels 1 (1.3) 0 0
Improved by 2 Levels 4 (5.1) 4 (5.3) 2 (2.6)
Improved by 1 Level 25 (31.6) 28 (37.3) 19 (24.4)
No Improvement 47 (59.5) 41 (54.7) 56 (71.8)
Worsened by 1 Level 2 (2.5) 2 (2.7) 1 (1.3)
Worsened by 2 Levels 0 0 0
Improved at Least 2 5 (6.3) 4 (5.3) 2 (2.6)
Levels
Did Not Improve at 74 (93.7) 71 (94.7) 76 (97.4)
Least 2 Levels
P-Valuea    0.239    0.363
Week 4
Clear 1 (1.3) 0 1 (1.3)
Almost Clear 6 (7.6) 5 (6.7) 1 (1.3)
Mild 25 (31.6) 22 (29.3) 16 (20.5)
Moderate 21 (26.6) 23 (30.7) 27 (34.6)
Severe 26 (32.9) 25 (33.3) 33 (42.3)
Week 4 Change from Baseline
Improved by 4 Levels 0 0 0
Improved by 3 Levels 2 (2.5) 0 1 (1.3)
Improved by 2 Levels 14 (17.7) 14 (18.7) 1 (1.3)
Improved by 1 Level 26 (32.9) 27 (36.0) 23 (29.5)
No Improvement 36 (45.6) 33 (44.0) 51 (65.4)
Worsened by 1 Level 1 (1.3) 1 (1.3) 2 (2.6)
Worsened by 2 Levels 0 0 0
Improved at Least 2 16 (20.3) 14 (18.7) 2 (2.6)
Levels
Did Not Improve at 63 (79.7) 61 (81.3) 76 (97.4)
Least 2 Levels
P-Valuea   <0.001    0.001
Week 8
Clear 3 (3.8) 4 (5.3) 1 (1.3)
Almost Clear 10 (12.7) 7 (9.3) 2 (2.6)
Mild 29 (36.7) 29 (38.7) 23 (29.5)
Moderate 15 (19.0) 16 (21.3) 21 (26.9)
Severe 22 (27.8) 19 (25.3) 31 (39.7)
Week 8 Change from Baseline
Improved by 4 Levels 0 1 (1.3) 0
Improved by 3 Levels 6 (7.6) 5 (6.7) 1 (1.3)
Improved by 2 Levels 16 (20.3) 20 (26.7) 7 (9.0)
Improved by 1 Level 32 (40.5) 26 (34.7) 24 (30.8)
No Improvement 24 (30.4) 22 (29.3) 42 (53.8)
Worsened by 1 Level 1 (1.3) 1 (1.3) 4 (5.1)
Worsened by 2 Levels 0 0 0
Improved at Least 2 22 (27.8) 26 (34.7) 8 (10.3)
Levels
Did Not Improve at 57 (72.2) 49 (65.3) 70 (89.7)
Least 2 Levels
P-Valuea    0.004   <0.001
aFrom a CMH test stratified by pooled site. Only treatment groups being compared are included in the analysis.
Source: Listing 16.2.10.1
TABLE 82D
Summary of Investigator Global Assessment (IGA) 2-Level
Improvement from Baseline that Results in Clear or Almost
Clear Visits 2, 4 and 8 and Treatment in the Intent-to-
Treat Population (Multiple Imputation Method)
Visit Minocycline Minocycline
Clear or Almost 1.5% 3% Vehicle
Clear and Improved (N = 79) (N = 75) (N = 78)
at Least 2 Levels n (%) n (%) n (%)
Week 2
Yes 2 (2.5) 2 (2.7) 2 (2.6)
No 77 (97.5) 73 (97.3) 76 (97.4)
P-Valuea >0.999  0.933
Week 4
Yes 7 (8.9) 5 (6.7) 2 (2.6)
No 72 (91.1) 70 (93.3) 76 (97.4)
P-Valuea 0.055 0.155
Week 8
Yes 13 (16.5) 11 (14.7) 3 (3.8)
No 66 (83.5) 64 (85.3) 75 (96.2)
P-Valuea 0.009 0.014
aFrom a CMH test stratified by pooled site. Only treatment groups being compared are included in the analysis.
SAFETY AND TOLERABILITY: Both doses of FMX103 appeared to be generally safe and well-tolerated. There were no serious treatment-related systemic adverse events, and there were only a few subjects overall who reported any treatment-related AEs (2, 4, and 5 in the 1.5%, 3%, and vehicle groups, respectively). Overall, 47% (109/232) of subjects reported ≥1 treatment-emergent AE (TEAE) (Table 83). The most common TEAEs (≥2% of subjects) included nasopharyngitis, urinary tract infection, cystitis, bronchitis (Table 84). 11 (4.7%) subjects reported treatment-related TEAEs, 9 had treatment-related dermal reactions (Tables 83 and Table 85). These reactions resolved before the end of the study. Serious TEAEs were reported in 4 subjects (3 in FMX-103 group and 1 in vehicle group) (Tables 83, and Table 85), however there were no treatment-related systemic TEAEs reported. In the FMX103 1.5% group, two subjects reported serious TEAEs (one had a contusion and one had a cerebral hemorrhage, hemiparesis, and a pulmonary embolism), and in the FMX103 3% group, one subject reported a serious TEAE (hemorrhoids). In the vehicle group, one subject reported a serious TEAE (gastroenteritis). None of these was considered to be treatment-related. A total of 4 subjects discontinued the study due to an adverse event (3 in the 3% group and 1 in the vehicle group (Table 83 and Table 85). All of these discontinued due to dermal-related TEAE skin (one subject in the vehicle group had pruritus and skin burning sensation; three subjects in the FMX103 3% group each had eczema, burning sensation, or worsening of rosacea), and all resolved by the end of the study (Table 83 and Table 85). Treatment appeared to be well tolerated; the severity of local signs and symptoms appeared to be similar between treatment groups.
TABLE 83
Summary of Safety Profile
Minocycline Minocycline
1.5% 3% Vehicle Overall
Overall Summary of (N = 79) (N = 75) (N = 78) (N = 232)
TEAEs, n (%) n (%) n (%) n (%) n (%)
Subjects with 1 or more TEAE 46 (58.2) 32 (42.7) 31 (39.7) 109 (47.0)
Subjects with 1 or more treatment- 2 (2.5) 4 (5.3) 5 (6.4) 11 (4.7)
related TEAEab
Treatment-Related Dermal 1 (1.3) 4 (5.3) 5 (6.4) 10 (4.3)
TEAEsc
Subjects with 1 or more severe 3 (3.8) 2 (2.7) 4 (5.1) 9 (3.9)
TEAE
Subjects with 1 or more TEAE 0 3 (4.0) 1 (1.3) 4 (1.7)
leading to study discontinuationb
Subjects with 1 or more serious 2 (2.5) 1 (1.3) 1 (1.3) 4 (1.7)
TEAEb
Safety population includes all randomized subjects who applied at least one dose of study drug
aIncludes unassessable, possible, probable, and certainly related adverse events
bIncludes skin and subcutaneous tissue disorders, and general disorders and administration-site conditions (i.e, application-site erythema).
cSubjects experiencing ≥1 AEs are counted only once for each AE term.
TABLE 84
Profile of Commmon Treatment-Emergent Adverse Events That Occured in ≥2% of Subjects
and Treatmet Related Dermal TEAES
Minocycline 1.5% Minocycline 3% Vehicle
(N = 79) (N = 75) (N = 78)
System Organ Class Subjectsa Events Subjectsa Events Subjectsa Events
Preferred Term n (%) n n (%) n n (%) n
Any Adverse Event
Overall 26 (32.9) 32 13 (17.3) 19 16 (20.5) 19
Infections and infestations
Nasopharyngitis 11 (13.9) 11  3 (4.0)  3  9 (11.5)  9
Urinary tract infection  3 (3.8)  3  2 (2.7)  2  3 (3.8)  3
Cystitis  2 (2.5)  3  2 (2.7)  2  0  0
Bronchitis  3 (3.8)  3  0  0  0  0
Urinary tract infection bacterial  2 (2.5)  2  0  0  0  0
Influenza  0  0  0  0  2 (2.6)  3
Skin and subcutaneous tissue disorders
Worsening of rosacea as compared to baseline  2 (2.5)  2  3 (4.0)  4  0  0
Eczema  2 (2.5)  2  2 (2.7)  2  2 (2.6)  2
Vascular disorders
Hypertension  2 (2.5)  2  2 (2.7)  2  2 (2.6)  2
Eye disorders
Eczema eyelids  2 (2.5)  2  0  0  0   0
Gastrointestinal disorders
Toothache  2 (2.5)  2  0  0  0   0
Nervous system disorders
Headache  0  0  2 (2.7)  4  0  0
aSubjects experiencing one or more adverse events are counted only once for each adverse event term.
TABLE 85
Summary of treatment-related dermal reactions, serious
TEAEs, and TEAE leading to study discontinuation
FMX-103 1.5% FMX-103 3% Vehicle
(n = 79) (n = 75) (n = 78)
Subjects with treatment-related 1 (1.3) 3 (4.0) 5 (6.4)
TEAEsa, n(%)
Skin and subcutaneous tissue
disorders
Worsening of rosacea as 0 2 (2.7) 0
compared to baseline
Eczema 0 1 (1.3) 1 (1.3)
Skin exfoliation 0 1 (1.3) 0
Erythema 0 0 1 (1.3)
Pruritus 0 0 1 (1.3)
Scab 0 0 1 (1.3)
Skin burning sensation 0 0 1 (1.3)
Spotted redness in treatment area 1 (1.3) 0 0
Redness after medication application 0 0 1 (1.3)
Face-burning or stinging 0 1 (1.3) 0
Eye disorders
Eye discharge 1 (1.3) 0 0
Subjects with ≥1 serious 2 (2.5) 1 (1.3) 1 (1.3)
TEAEa, n(1%)
Haemorrhoids 0 1 (1.3) 0
Contusion 1 (1.3) 0 0
Cerebral haemorrhage 1 (1.3) 0 0
Hemiparesis 1 (1.3) 0 0
Pulmonary embolism 1 (1.3) 0 0
Gastroenteritis 0 0 1 (1.3)
Subjects with ≥1 TEAE leading 0 3 (4.0) 1 (1.3)
to study discontinuation
n(%)a,b
Eczema 0 1 (1.3) 0
Worsening of rosacea as 0 1 (1.3) 0
compared to baseline
Pruritus 0 0 1 (1.3)
Skin burning sensation 0 0 1 (1.3)
Face burning or stinging 0 1 (1.3) 0
Safety population includes all randomized subjects who applied at least one dose of study drug.
aSubjects experiencing ≥1 AEs are counted only once for each AE term.
bEczema, rosacea, pruritus, face burning or stinging , and skin burning sensation were classed as skin and subcutaneous tissue disorders (TEAE dermal related).
TABLE 86
Summary of Post-Baseline Local Safety Assessments
by Treatment Safety Population
Minocycline Minocycline
1.5% 3% Vehicle
Scale (N = 79) (N = 75) (N = 78)
Visit n(%) n(%) n(%)
Telangiectasis Week 2
None 21 (26.6) 8 (10.7) 10 (12.8)
Mild 39 (49.4) 42 (56.0) 41 (52.6)
Moderate 19 (24.1) 20 (26.7) 22 (28.2)
Severe 0 1 (1.3) 2 (2.6)
None or Mild 60 (75.9) 50 (66.7) 51 (65.4)
Week 4
None 20 (25.3) 11 (14.7) 9 (11.5)
Mild 39 (49.4) 42 (56.0) 39 (50.0)
Moderate 20 (25.3) 14 (18.7) 24 (30.8)
Severe 0 1 (1.3) 2 (2.6)
None or Mild 59 (74.7) 53 (70.7) 48 (61.5)
Week 8
None 20 (25.3) 13 (17.3) 11 (14.1)
Mild 38 (48.1) 37 (49.3) 32 (41.0)
Moderate 19 (24.1) 15 (20.0) 26 (33.3)
Severe 0 0 2 (2.6)
None or Mild 58 (73.4) 50 (66.7) 43 (55.1)
Week 12
None 22 (27.8) 14 (18.7) 11 (14.1)
Mild 42 (53.2) 42 (56.0) 33 (42.3)
Moderate 14 (17.7) 16 (21.3) 31 (39.7)
Severe 0 1 (1.3) 2 (2.6)
None or Mild 64 (81.0) 56 (74.7) 44 (56.4)
Burning/Stinging
Week 2
None 53 (67.1) 37 (49.3) 38 (48.7)
Mild 17 (21.5) 24 (32.0) 24 (30.8)
Moderate 8 (10.1) 8 (10.7) 11 (14.1)
Severe 1. (1.3) 2 (2.7) 2 (2.6)
None or Mild 70 (88.6) 61 (81.3) 62 (79.5)
Week 4
None 50 (63.3) 47 (62.7) 42 (53.8)
Mild 20 (25.3) 14 (18.7) 23 (29.5)
Moderate 7 (8.9) 7 (9.3) 9 (11.5)
Severe 2 (2.5) 0 0
None or Mild 70 (88.6) 61 (81.3) 65 (83.3)
Week 8
None 58 (73.4) 50 (66.7) 40 (51.3)
Mild 14 (17.7) 13 (17.3) 22 (28.2)
Moderate 5 (6.3) 1 (1.3) 8 (10.3)
Severe 0 1 (1.3) 1 (1.3)
None or Mild 72 (91.1) 63 (84.0) 62 (79.5)
Week 12
None 55 (69.6) 54 (72.0) 45 (57.7)
Mild 19 (24.1) 13 (17.3) 27 (34.6)
Moderate 4 (5.1) 5 (6.7) 5 (6.4)
Severe 0 1 (1.3) 0
None or Mild 74 (93.7) 67 (89.3) 72 (92.3)
Flushing/Blushing
Week 2
None 42 (53.2) 35 (46.7) 27 (34.6)
Mild 22 (27.8) 23 (30.7) 25 (32.1)
Moderate 13 (16.5) 10 (13.3) 18 (23.1)
Severe 2 (2.5) 3 (4.0) 5 (6.4)
None or Mild 64 (81.0) 58 (77.3) 52 (66.7)
Week 4
None 45 (57.0) 40 (53.3) 23 (29.5)
Mild 22 (27.8) 18 (24.0) 31 (39.7)
Moderate 7 (8.9) 8 (10.7) 18 (23.1)
Severe 5 (6.3) 2 (2.7) 2 (2.6)
None or Mild 67 (84.8) 58 (77.3) 54 (69.2)
Week 8
None 47 (59.5) 39 (52.0) 32 (41.0)
Mild 22 (27.8) 20 (26.7) 24 (30.8)
Moderate 6 (7.6) 5 (6.7) 13 (16.7)
Severe 2 (2.5) 1 (1.3) 2 (2.6)
None or Mild 69 (87.3) 59 (78.7) 56 (71.8)
Week 12
None 51 (64.6) 39 (52.0) 33 (42.3)
Mild 16 (20.3) 22 (29.3) 30 (38.5)
Moderate 10 (12.7) 11 (14.7) 12 (15.4)
Severe 1 (1.3) 1 (1.3) 2 (2.6)
None or Mild 67 (84.8) 61 (81.3) 63 (80.8)
CLINICAL ERYTHEMA ASSESSMENT: Both FMX103 doses appeared to reduce erythema (Table 87). Following treatment, a decrease in erythema was observed. At 12 weeks, the 1.5% and 3% doses of FMX103 were effective in reducing erythema, compared to the vehicle-treated group (Table 87 and FIG. 3) as opposed to oral Orecea which had no effect on erythema. In particular, the majority of subjects in each treatment group (approximately 53% to 55% in each group) had a clinical erythema assessment of moderate or severe. At Week 12, a larger majority of subjects in the 1.5% and 3% FMX-103 groups (approximately 76% to 85%, respectively) had a clinical erythema assessment of clear to mild vs. approximately 68% of subjects in the vehicle group. Thus, FMX103 advantageously reduced erythema in moderate to severe cases, as well as avoided systemic side effects.
TABLE 87
Summary of Changes from Baseline in Clinical Erythema Assessment by Visit
and Treatment Intent-to-Treat Population (Multiple Imputation Method)
Minocycline Minocycline
1.5% 3% Vehicle
Visit (N = 79) (N = 75) (N = 78)
Parameter n (%) n (%) n (%)
Week 2 Baseline
Clear 1 (1.3) 0 0
Almost Clear 12 (15.2) 7 (9.3) 7 (9.0)
Mild 24 (30.4) 28 (37.3) 28 (35.9)
Moderate 33 (41.8) 31 (41.3) 36 (46.2)
Severe 9 (11.4) 9 (12.0) 7 (9.0)
Post-Baseline
Clear 0 2 (2.7) 0
Almost Clear 21 (26.6) 12 (16.0) 10 (12.8)
Mild 30 (38.0) 34 (45.3) 28 (35.9)
Moderate 19 (24.1) 21 (28.0) 34 (43.6)
Severe 9 (11.4) 6 (8.0) 6 (7.7)
Change in Moderate or Severe −33% (42 to 28) −33% (40 to 27) −7% (43 to 40)
Erythema Cases*
Improved at Least 2 Levels 1 (1.3) 5 (6.7) 0
Did Not Improve at Least 2 Levels 78 (98.7) 70 (93.3) 78 (100.0)
Week 4 Baseline
Clear 1 (1.3) 0 0
Almost Clear 12 (15.2) 7 (9.3) 7 (9.0)
Mild 24 (30.4) 28 (37.3) 28 (35.9)
Moderate 33 (41.8) 31 (41.3) 36 (46.2)
Severe 9 (11.4) 9 (12.0) 7 (9.0)
Post-Baseline
Clear 3 (3.8) 2 (2.7) 1 (1.3)
Almost Clear 22 (27.8) 18 (24.0) 12 (15.4)
Mild 25 (31.6) 39 (52.0) 29 (37.2)
Moderate 20 (25.3) 12 (16.0) 28 (35.9)
Severe 9 (11.4) 4 (5.3) 8 (10.3)
Change in Moderate or Severe −31% (42 to 29) −60% (40 to 16) −16.3% (43 to 36)
Erythema Cases*
Improved at Least 2 Levels 4 (5.1) 7 (9.3) 1 (1.3)
Did Not Improve at Least 2 Levels 75 (94.9) 68 (90.7) 77 (98.7)
Week 8 Baseline
Clear 1 (1.3) 0 0
Almost Clear 12 (15.2) 7 (15.2) 7 (9.0)
Mild 24 (30.4) 28 (30.4) 28 (35.9)
Moderate 33 (41.8) 31 (41.8) 36 (46.2)
Severe 9 (11.4) 9 (11.4) 7 (9.0)
Post-Baseline
Clear 5 (6.3) 1 (1.3) 4 (5.1)
Almost Clear 23 (29.1) 21 (28.0) 10 (12.8)
Mild 29 (36.7) 39 (52.0) 33 (42.3)
Moderate 17 (21.5) 12 (16.0) 26 (33.3)
Severe 5 (6.3) 2 (2.7) 5 (6.4)
Change in Moderate or Severe −48% (42 to 22) −65% (40 to 14) −28% (43 to 31)
Erythema Cases*
Change in Severe Erythema Cases** −44% (9 to 5) −78% (9 to 2) −28.6% (7 to 5)
Improved at Least 2 Levels 12 (15.2) 12 (16.0) 6 (7.7)
Did Not Improve at Least 2 Levels 67 (84.8) 63 (84.0) 72 (92.3)
Week 12 Baseline
Clear 1 (1.3) 0 0
Almost Clear 12 (15.2) 7 (9.3) 7 (9.0)
Mild 24 (30.4) 28 (37.3) 28 (35.9)
Moderate 33 (41.8) 31 (41.3) 36 (46.2)
Severe 9 (11.4) 9 (12.0) 7 (9.0)
Post-Baseline
Clear 4 (5.1) 5 (6.7) 3 (3.8)
Almost Clear 23 (29.1) 17 (22.7) 15 (19.2)
Mild 33 (41.8) 42 (56.0) 35 (44.9)
Moderate 18 (22.8) 9 (12.0) 20 (25.6)
Severe 1 (1.3) 2 (2.7) 5 (6.4)
Change in Moderate or Severe −55% (42 to 19) −73% (40 to 11) −42% (43 to 25)
Erythema Cases*
Change in Severe Erythema Cases** −89% (9 to 1) −78% (9 to 2) −28.6% (7 to 5)
Improved at Least 2 Levels 10 (12.7) 11 (14.7) 7 (9.0)
Did Not Improve at Least 2 Levels 69 (87.3) 64 (85.3) 71 (91.0)
*% reduction of moderate to severe cases out of number moderate to severe cases
**% reduction of severe cases out of number severe cases
FMX103 vs. Oracea® (Oral Doxycycline 40 mg)2
Currently, Oracea® is the drug of choice for treatment of papulopustular rosacea. However, the current Phase 2 trial showed that FMX103 had surprising advantages, since it achieved greater effect despite a shorter treatment period (12 weeks vs. 16 weeks) and despite a higher baseline severity of rosacea (both mean lesion count and IGA severity, see Table 88), while avoiding systemic adverse events associated with oral doxycycline. As shown in Table 88, the results for reduction of absolute mean lesion count of FMX103 (a 21 point reduction for the 1.5% group) and percent change of lesion count (61.4% for the 1.5% group) were all higher than the results observed with Oracea®.
TABLE 88
Summary of clinical trial results for FMX103 and Oracea (literature comparison)
Oracea ®
FMX103 1.5% Oral Doxycycline1,2
Topical Minocycline (Week 16)
(Week 12) Study 1 Study 2
Active Vehicle Active Vehicle Active Vehicle
Inflammatory Lesions
Baseline No. of lesions 34.5 30.6 19.5 20.3 20.5 21.2
Mean Absolute −21.1 −7.8 −11.8 −5.9 −9.5 −4.3
Reduction
Mean Percent 61.4% −29.7%
Reduction
IGA
Baseline Moderate   43% 51.3% 52.8% 52.4% 54.2% 55.6%
IGA Severe   57% 48.7% 40.9% 39.5% 33.8% 39.6%
≥2 IGA Grade Reduction 41.8% 17.9% 45.7% 25.8% 22.5% 16.0%
IGA = Clear/Almost Clear 25.3%  7.7% 30.7% 19.4% 14.8%  6.3%
1Source: (1) Oracea Prescribing Information, December 2014; (2) Del Rosso et al, JAAD 56 (2007) 791-802
2Literature Comparison: clinical trials are conducted under widely varying conditions, efficacy rates observed in the clinical trials of one drug cannot be directly compared to rates in the clinical trials of another drug. Head-to-head trials with FMX103 were not conducted.
Example 9 Pharmacokinetic Comparison of Once-Daily Topical Minocycline Foam 4% Vs Oral Minocycline for Moderate-to-Severe Acne
OBJECTIVE: To characterize minocycline pharmacokinetics and relative bioavailability following multiple-dose topical administration of minocycline hydrochloride (HCl) foam 4% (FMX-101 4%) as compared with single-dose oral of minocycline HCl extended-release tablets (Solodyn®) in both adult and pediatric subjects with moderate-to-severe acne.
METHODS: Two Phase I, single-center, nonrandomized, open-label, active-controlled, 2-period, 2-treatment crossover clinical studies were conducted. One study included 30 healthy adults (mean age, 22.6 years; 90% white, and 60% females) and the other included 20 pediatric subjects (mean age, 13.2 years; 65% black or African American, and 55% females) who had moderate-to-severe acne. Subjects were initially assigned to receive a single oral dose of a minocycline HCl extended-release tablet (approximately 1 mg/kg) after an overnight fast of at least 10 hours (Period 1). At 10 days after the oral minocycline dose, topical minocycline foam 4% was applied, once daily for 21 days (Period 2). Each application was approximately 4 g (a maximal-use dose). Serial blood samples were obtained before and after administration of oral minocycline and each topical application of minocycline foam 4% on days 1, 12, and 21. On the day of initial dosing (Day 1), subjects checked into the clinic where they were confined until 1 hour after study drug was administered. Predose clinical assessments were performed and a 1 mL blood sample for PK analysis was obtained before study drug was administered. Pediatric subjects received a 4 g, once-daily topical application of FMX101 4% for 7 days. Blood samples were collected at 3, 12, 16, and 24 hours after application on day 7.
SUBJECTS: Adults were eligible for this study if they were 18 to 35 years of age; children were eligible for the pediatric study if they were 9 to 16 years and 11 months of age and in good health, as judged on the basis of their medical history and the screening procedures. They were required to have moderate-to-severe facial acne vulgaris as well as acne affecting at least two additional regions of the body (neck, upper chest, upper back, or arms). Body mass index of the subjects was specified to range from 18.5 to 29.9 kg/m2. Use of tobacco and/or nicotine during the 30 days prior to the screening visit was prohibited, and all subjects were required to have a negative test for drug abuse and to be able to fully comply with the study requirements. All subjects provided written, informed consent.
Subjects were excluded if they met any one of the following criteria: female who was pregnant or lactating, or planning a pregnancy; use of medicated cleansers or topical acne treatment within 1 week prior to enrollment, or use of topical retinoids, anti-inflammatories, corticosteroids, or systemic antibiotics or other systemic acne treatments within 4 weeks prior to enrollment, or use of systemic retinoids or corticosteroids within 12 weeks prior to enrollment; any abnormal laboratory values at baseline; any dermatologic condition of the face or facial hair, or any other conditions that, in the opinion of the investigator, could have interfered with the clinical evaluations or the course of the study, or exposed the subject to undue risk.
SAMPLING: During Period 1, subjects received a single oral dose of minocycline; blood samples were obtained before dosing and through 96 hours (at 30 minutes and at 1, 1.5, 2, 3, 4, 6, 9, 12, 16, 24, 48, 72, and 96 hours) after administration of oral minocycline. During Period 2, topical minocycline foam 4% was applied daily for 21 days. Blood samples were obtained before dosing and at 2, 4, 8, 12, 16, and 24 hours after the first topical application of minocycline foam 4% (Period 2, day 1). On days 6, 9, 10, 11, and 16, blood samples were obtained at approximately 30 minutes before the scheduled application. On days 12 and 21, blood samples were obtained at 30 minutes before and at 2, 4, 8, 12, 16, and 24 hours after topical application of minocycline foam 4%. Day 21 was the last day of application, at which time all assessments and safety procedures were performed. After the final application, subjects were asked to return for additional blood sampling on days 23, 24, and 25.
BIOANALYTICAL METHODS: Blood samples were collected and centrifuged, and the separated plasma was stored at approximately −70° C. Plasma minocycline concentrations were determined using validated liquid chromatography with a tandem mass spectrometry detection method (Nuvisan GmbH); the limit of detection was 0.270 ng/mL.
PHARMACOKINETIC ANALYSES: Noncompartmental pharmacokinetic parameters for minocycline were calculated for all subjects for each day during Period 1 and on days 1, 12, and 21 for Period 2. Pharmacokinetic parameters included the following: Cmax (maximum plasma concentration); tmax (time of maximum measured plasma concentration); AUC0-inf (area under the plasma concentration vs time curve [AUC] from time 0 to infinity); AUC0-tldc (AUC from time 0 to the time of last detectable concentration); t1/2 (terminal phase half-life); C24 (minocycline concentration 24 hours after topical application of minocycline foam 4%); and AUC0-tau (AUC during the 24-hour dosing interval for topical minocycline foam 4%).
AUC0-tldc was calculated by the linear trapezoidal method, and AUC0-inf was calculated as the sum of AUC0-tldc plus the ratio of the last measurable plasma concentration to the terminal-phase rate constant; both of these assessments were performed for the oral minocycline dose only. Accumulation ratio was calculated by dividing the AUC0-tau of day 12 or day 21 by the AUC0-tau of day 1 for day 12 and day 21, respectively, where tau is 1 day (24 hours).
SAFETY EVALUATION: Safety was assessed by the evaluation of reported and observed adverse events (AEs), vital signs (blood pressure, heart rate), clinical laboratory assessments (hematology, chemistry, and urinalysis), and electrocardiograms (ECGs). The number and percentage of subjects were documented for (1) any treatment-emergent AE (TEAE); (2) any treatment-related TEAE (probable, possible); (3) any serious TEAE; (4) any severe TEAE; and (5) any TEAE leading to drug withdrawal. The intensity, duration, and causal relationship to the investigational products were rated for all AEs.
STATISTICAL ANALYSES: Descriptive statistics were reported for minocycline concentration data at each sample time and were also calculated for all pharmacokinetic parameters. Actual sample collection times were used for the purpose of calculating pharmacokinetic parameters. All deviations from the scheduled sampling time were reported in the final report as “Sample Time Deviations.” No values of kel, AUC0-inf, or ty, were reported for cases that did not exhibit a terminal log-linear phase in the concentration vs time profile. Geometric mean was calculated for Cmax, AUC0-tldc, AUC0-inf, and AUC0-tau, and the harmonic mean was calculated for t1/2. Analysis of multiple-dose accumulation, determination of steady state, and other pertinent comparisons of pharmacokinetic parameters across or between doses were performed using the appropriate statistical methods. The 90% confidence intervals (CIs) for the difference between treatment least squares means (LSMs) were calculated for the parameters AUC (AUC0-inf, AUC0-tau) and Cmax using log-transformed data. Topical minocycline foam 4% (test treatment) was compared against oral minocycline (reference). The CIs were expressed as a percentage relative to the LSM of the reference treatment.
RESULTS: In total, 30 subjects were enrolled, and all completed the study as planned. The mean age of the subjects was 22.6 years (range, 18 to 30 years). They were mostly white (90%) and female (60%). All subjects had moderate-to-severe acne at baseline evaluation. Treatment adherence rate was high: only 2 subjects missed a single topical minocycline foam 4% application (on day 3) and only 1 subject missed multiple topical minocycline foam 4% applications (on days 9, 10, and 11).
After a single oral dose of minocycline, plasma minocycline concentration increased until 3 hours (median tmax value), followed by a log-linear decrease over the remainder of the 96-hour sampling period (FIG. 4A). The geometric mean Cmax was 850.04 ng/mL (Table 89).
TABLE 89
Summary of PK Parameters (Pharmacokinetic Concentration Population) Following Single Dose Oral
Administration of Solodyn (~1 mg/kg minocycline) and Topical Application of FMX-101,
4% for 21 days to Acne Patients, Study FX2014-03
Mean CV Geometric Harmonic
PK Parameter N (SD) Median Min, Max (%) Mean Mean
Period
1, Solodyn (~1 mg/kg minocycline)
Day 1-5
Cmax (ng/mL) 30 873.367 (220.046) 801.00 603.00, 1620.00 25.20 850.049
Tmax (h) 30 2.7 (0.81) 3.0 1.5, 4.0 30.01
AUC0-tldc (ng h/mL) 30 15227.30 (3624.298) 15363.00 9317.00, 25420.00 23.80 14823.41
kel (1/h) 30 0.044 (0.005) 0.04 0.03,0.05 11.52
AUC0-inf (ng h/mL) 30 15474.57 (3690.744) 15553.50 9387.00, 25697.00 23.85 15060.29
T1/2 (h) 30 16.0 (1.85) 15.9 12.8, 20.1 11.59 15.8
Period 2, FMX-101, 4% (4 g)
Day 1-2
Cmax ( ng/mL) 30 1.706 (0.823) 1.50 0.68, 3.88 48.26 1.539
Tmax (h) 30 11.5 (4.01) 12.0 4.0, 23.8 35.00
C24 (ng/mL) 30 1.336 (0.667) 1.13 0.53, 3.09 49.91 1.192
AUC0-tau (ng h/mL)1 30 31.75 (14.950) 28.81 10.87, 72.56 47.09 28.70
Day 12-13
Cmax (ng/mL) 29 1.325 (0.787) 1.33 0.14, 3.27 59.40 1.063
Tmax (h) 29 9.4 (5.13) 8.0 0.0, 23.8 54.33
C24 (ng/mL) 29 0.919 (0.531) 0.86 0.00,2.01 57.76 0.869
AUC0-tau (ng h/mL)1 29 24.62 (14.100) 22.31 3.24, 55.69 57.26 20.06
Accumulation Ratio R2 29 0.85 (0.552) 0.76 0.00, 2.56
Day 21-25
Cmax (ng/mL) 30 1.253 (0.645) 1.02 0.41, 2.73 51.52 1.109
Tmax (h) 30 12.3 (4.79) 14.0 4.0, 23.8 39.05
kel (1/h) 14 0.018 (0.006) 0.02 0.01, 0.03 32.59
T1/2 (h) 14 44.3 (25.39) 37.8 26.7, 125.3 57.30 37.6
C24 (ng/mL) 30 0.901 (0.406) 0.77 0.30, 1.89 45.11 0.821
AUC0-tau (ng h/mL)1 30 23.02 (10.798) 20.45 6.28, 46.85 46.91 20.70
Accumulation Ratio R 2 30 0.79 (0.368) 0.62 0.39, 1.66
SD = standard deviation.
CV = coefficient of variation.
Concentrations below the limit of quantitation (LOQ) were reported as zero for the purpose of calculating PK parameters.
1AUC0-tau = AUC during the 24-hour dosing interval.
2On Day 12, R = AUC0-tau Day 12/AUC0-tau Day 1; On Day 21, R = AUC0-tau Day 21/AUC0-tau Day 1.
Source: TABLE 14.2.2.1.
Following topical application of a 4-g maximal-use dose of minocycline foam 4%, plasma minocycline concentration increased until 8 to 14 hours (median tmax value) on days 1, 12, and 21. The change in mean plasma minocycline concentration with time following topical application of minocycline foam 4% is shown in FIG. 4B. The plasma concentration at 24 hours after topical application of minocycline foam 4% was low; geometric mean C24 values on days 1, 12, and day 21 were 1.192, 0.869, and 0.821 ng/mL, respectively (Table 89). A comparison of the plasma minocycline concentration vs time profiles over the first 24 hours after oral minocycline or topical minocycline foam 4% administration is shown in FIG. 4C. Overall, the plasma minocycline concentration following topical application of minocycline foam 4% was very low; the geometric mean Cmax values ranged from 1.1 ng/mL to 1.5 ng/mL (Table 89).
Steady state for topical application of minocycline foam 4% was achieved by day 6 (FIG. 5). Relative bioavailability of minocycline after topical minocycline foam 4% administration, as compared with oral minocycline, for day 12 and day 21 was 0.126% and 0.131%, respectively, based on Cmax, and it was 0.134% and 0.137%, respectively, based on AUC values (Table 90). Minocycline exposure following daily topical application of minocycline foam 4% was 730 to 765 times lower than that following a single oral dose of −1 mg/kg minocycline. The daily dosing of topical minocycline foam 4% was associated with a mean (range) accumulation ratio of 0.85 (0.00, 2.56) and 0.79 (0.39, 1.66) at day 12 and day 21, respectively (Table 89). There was no evidence that minocycline had accumulated during the 21 days of topical application of minocycline foam 4%. In pediatric subjects, following topical application of FMX101 4% for 7 days, the overall average plasma concentration of minocycline across all ages was 2.5 ng/mL (relatively constant over the entire sampling interval). See Table 92. Concentrations tend to be higher for younger age groups (9-11 years: 3.5 ng/mL; 12-14 years: 2.5 ng/mL) than for the older age group (15-16 years, 11 months: 1.7 ng/mL). The mean overall maximum observed plasma concentration (Cmax) plasma minocycline concentration 24 hours after FMX101 application (C24), and area under the concentration-time curve from time zero (predose) through 24 hours (AUC0-tau) were approximately 3.1 ng/mL, 2.5 ng/mL, and 61 ng*h/mL, respectively. See Table 93. Cmax, C24, and AUC0-tau tended to be higher in the subjects aged 9 to 11 years and subjects aged 12 to 14 years than the subjects aged 15 years to 16 years 11 months, however the small sample size precludes making any conclusions regarding the effect of age on these PK parameters.
In both studies, FMX101 4% was safe and well-tolerated. There were no drug-related treatment-emergent adverse events (TEAEs), no TEAEs that led to treatment discontinuation, and no serious adverse events. Overall, there was a high rate of subject satisfaction with the use of FMX101, 4%. A majority of subjects reported they were “satisfied” or “very satisfied” with the treatment compared with topical acne therapies used previously. Additionally, the subjects were satisfied with the feel of the foam on the skin.
TABLE 90
Summary of minocycline relative bioavailability with
oral minocycline administration and topical application
of minocycline foam 4% at days 12 and 21.
Topical minocycline foam
4% (FMX-101) vs oral Geometric LSM Ratio (%)
minocycline(Solodyn N (GMR),a % (90% CI)
Day 12 Cmax 29 0.126 (0.100, 0.159)
Day 12 AUCb 29 0.134 (0.110, 0.163)
Day 21 C max 30 0.131 (0.113, 0.151)
Day 21 AUC c 30 0.137 (0.121, 0.156)
Notes
aThe 90% confidence intervals for the difference between Test (topical minocycline foam 4%) and Reference (oral minocycline (Solodyn) treatment least squares mean values were calculated using natural logarithm-transformed Cmax and AUC values.
Geometric LSM ratio (GMR) and the associated 90% CI are back transformed point estimate and the associated 90% CI.
bDay 12 AUC0-tau for topical minocycline foam 4% (FMX-101) vs AUC0-inf for oral minocycline (Solodyn).
c Day 21 AUC0-tau for topical minocycline foam 4% vs AUC0-inf (FMX-101) for oral minocycline (Solodyn).
Abbreviations: AUC, area under the curve; Cmax, maximum plasma concentration; CI, confidence interval; AUC0-inf, AUC from time 0 to infinity; AUC0-tau, AUC during the 24-hour dosing interval for topical minocycline foam 4%.
SAFETY EVALUATION IN ADULTS: Once-daily application of topical minocycline foam 4% for 21 days was well tolerated. There was minimal systemic absorption and accumulation of minocycline over the 21 days of topical application of minocycline foam 4% as compared with oral minocycline. The most common TEAEs observed were dysmenorrhea, nasal congestion, and rhinorrhea, all occurring in the topical minocycline foam treatment period (Table 91). In the oral minocycline treatment period, 2 subjects (6.7%) reported a total of 2 TEAEs, while 9 subjects (30%) in the topical minocycline foam 4% treatment period reported a total of 14 TEAEs. There were no TEAEs considered to be related to the study medication. There were also no serious TEAEs, severe TEAEs, or TEAEs that resulted in study medication being withdrawn, as well as no clinically significant laboratory findings in any subjects.
SAFETY EVALUATION IN PEDIATRICS: Once-daily application of topical minocycline foam 4% for 7 days was safe and well tolerated. There were no TEAEs considered related to study drug. There were no clinically significant laboratory findings in any subject. Adverse events are summarized in Table 94. One subject (5.0%) reported a total of 2 TEAEs (nausea and vomiting). There were no serious TEAEs, no severe TEAEs, and no TEAEs that resulted in study medication being withdrawn. No TEAEs associated with laboratory abnormalities or vital signs were reported. No clinically significant abnormal physical examination findings were reported for any subject.
TABLE 91
Overall summary of AEs following administration
of oral minocycline and topical application
of minocycline foam 4% daily for 21 days.
Oral Topical
minocycline minocycline foam
(N = 30) 4% (N = 30)
Subjects with treatment-relateda 0 0
TEAE, n (%)
Subjects with serious TEAE, n (%) 0 0
Subjects with TEAE leading to study 0 0
discontinuation, n (%)
Subjects with any TEAEa, 2 (6.7)  9 (30.0)
n (%)
Dysmenorrhea 0 2 (6.7)
Nasal congestion 0 2 (6.7)
Rhinorrhea 0 2 (6.7)
Asthma 0 1 (3.3)
Bronchitis 0 1 (3.3)
Cough 1 (3.3) 0
Dermatitis contact 0 1 (3.3)
Headache 1 (3.3) 0
Oropharyngeal pain 0 1 (3.3)
Pharyngitis streptococcal 0 1 (3.3)
Respiratory tract congestion 0 1 (3.3)
Tonsillitis 0 1 (3.3)
Notes
aSubjects with one or more TEAEs that were considered possibly or probably related.
bSubjects with one or more TEAEs are only counted once.
Abbreviations: TEAE, treatment-emergent adverse event.
TABLE 92
Plasma Concentrations of Minocycline in Pediatric
Acne Patients Treated with FMX101
Mean (SD) Concentrations of Minocycline in Plasma (ng/mL)
Cohort 1 Cohort 2 Cohort 3
(9 to 11 (12 to 14 (15 to 16
Day and Time years) years) years 11 months) Overall
of Sample1 (N = 6) (N = 8) (N = 6) (N = 20)
Day 1, Predose 0.000 (0.0000) 0.000 (0.0000) 0.000 (0.0000) 0.000 (0.0000)
Day 7, Predose 3.700 (4.3614) 2.111 (2.3463) 1.870 (1.2783) 2.515 (2.8473)
Day 7, 3 hours 3.693 (3.9303) 2.164 (2.0046) 1.803 (1.1810) 2.514 (2.5618)
Day 8, 12 hours 3.972 (3.8346) 2.233 (1.8408) 1.775 (0.9688) 2.617 (2.4961)
Day 8, 16 hours 3.780 (3.7667) 2.263 (1.9884) 1.620 (0.9149) 2.525 (2.4891)
Day 8, 24 hours 3.663 (3.2094) 2.446 (1.8781) 1.479 (0.8684) 2.521 (2.2284)
Source: Table 14.2.1
Abbreviations: SD = standard deviation
1As the Day 7 dose was applied in the evening, some samples were collected on calendar Day 8, but PK parameters calculated from data obtained within approximately 24 hours of the Day 7 dose are referred to as Day 7 parameters in this clinical study report.
TABLE 93
Summary of Pharmacokinetic Parameters of Minocycline
in Pediatric Acne Patients Treated with FMX101
Mean (SD) Pharmacokinetic Parameters1 of Minocycline in Plasma
Cmax Tmax C24 AUC0-tau
Cohort and Age (ng/mL) (h)2 (ng/mL) (ng*h/mL)
Cohort 1 4.447 (3.9687) 12 (0, 24) 3.663 (3.2094) 90.861 (90.1626)
(9 to 11 years)
(N = 6)
Cohort 2 2.783 (2.1505) 20 (0, 24) 2.446 (1.8781) 54.015 (46.2250)
(12 to 14 years)
(N = 8)
Cohort 3 2.036 (1.1676)  6 (0, 24) 1.479 (0.8684) 40.797 (23.7635)
(15 to 16 years 11 months)
(N = 6)
Overall 3.058 (2.6792) 12.1 (0, 24)   2.521 (2.2284) 61.104 (59.2125)
(N = 20)
Source: Table 14.2.2
Abbreviations: AUC0-tau = area under the concentration-time curve (ng/mL*hours) from time zero (predose) through 24 hours; C24 = plasma minocycline concentration 24 hours after FMX101 application; Cmax = maximum observed plasma concentration; SD = standard deviation; Tmax = time to maximum measured plasma concentration.
1Terminal phase rate constant (kel) and apparent terminal phase half-life (T1/2) were not estimable because either there were fewer than 3 values in the terminal phase, the slope was positive, or the T1/2 estimate was more than half the range of the terminal phase.
2Median (minimum, maximum) shown for Tmax.
TABLE 94
Overall Summary of Adverse Events (Safety Population)
Following Topical Application of FMX101, 4% for 7 Days
to Pediatric Acne Patients, Study FX2016-21
All Subjects
(N = 20)
Subjects with Any TEAE, N (%) 1 (5.0)
Number of TEAEs 2
Subjects with Any Treatment-Related 0
TEAE, N (%)1
Number of Treatment-Related TEAEs 0
Subjects with Any Serious TEAE, N (%) 0
Number of Serious TEAEs 0
Subjects with Any Severe TEAE, N (%) 0
Number of Severe TEAEs 0
Subjects with Any TEAE Leading to 0
Drug Withdrawn, N (%)
Number of TEAEs Leading to Drug Withdrawn 0
Source: Table 14.3.1.1
Abbreviations: N = number of subjects; TEAE = treatment-emergent adverse event.
Note:
TEAEs were defined as AEs with an onset date on or after the date of the first dose of study drug or existing events that worsened after the first study drug application during the study.
1Treatment-related AEs included possibly and probably related.
This Phase 1 study in adults evaluated the pharmacokinetics and bioavailability of minocycline in multiple-dose, once-daily topical application of minocycline foam 4%, as compared with oral administration of minocycline HCl. The pharmacokinetic results demonstrated minimal systemic absorption and accumulation of minocycline following the maximal-use dose of topical minocycline foam 4% for 21 days, as compared with oral minocycline. Topical minocycline foam 4% was well tolerated in once-daily application in subjects with AV, with no serious or severe AEs or AEs related to study medication or resulting in treatment discontinuation.
Systemic exposure to minocycline with daily topical application of the 4-g dose of minocycline foam 4% for 21 days was 730 to 765 times lower than that following a single, oral, ˜1 mg/kg dose of minocycline. There was no evidence of accumulation of minocycline over the 21 days of once-daily topical application of a 4-g maximal-use dose of minocycline foam 4%. The observation of slightly higher mean minocycline values (Cmax) on day 1 than on day 12 or day 21 was probably due to residual minocycline from the oral minocycline dose that had been administered 10 days prior to the start of topical minocycline foam 4% application. Plasma minocycline values were measurable for the majority of subjects before topical minocycline foam 4% application; however, this observation was considered to have no impact on the interpretation of the results.
In this study, all AEs were reported, and vital signs and clinical laboratory assessments, including hematology, chemistry and urinalysis, were monitored. Overall, topical minocycline foam 4% was well tolerated following multiple-dose administration for up to 21 days. The most common TEAEs were dysmenorrhea, nasal congestion, and rhinorrhea. There were no treatment-related AEs, no serious or severe TEAEs, and no serious TEAEs that led to withdrawal from the study.
Common systemic adverse reactions reported in clinical trials with oral minocycline have included headache, fatigue, dizziness, and itch, which were not seen in this study. There were also no reported cases of autoimmune conditions, such as drug-induced lupus-like syndrome, nor of skin and hypersensitivity reactions that have been associated with oral minocycline. There were no findings of clinically significant abnormalities of laboratory values or vital signs, or abnormalities in ECGs or physical examinations in any subjects. Acne severity did not worsen in subjects after 21 days of using topical minocycline foam 4%.
CONCLUSION: In both adult and pediatric subjects, the plasma concentration of minocycline was low after topical application of FMX101 4%. No significant systemic exposure to minocycline was observed with once-daily topical application of FMX101 4% for 21 days in adults and 7 days in pediatric subjects. FMX101 4% appears to be a well-tolerated treatment option for both pediatric and adult subjects with moderate-to-severe acne.
Without being bound by any theory, the improved patient satisfaction with the use of FMX101, 4%, may correlate at least in part with the lower blood exposure of the minocycline after application of the FMX101, 4% formulation versus oral administration of SOLODYN®. Additionally, the lower blood exposure of the minocycline in patients treated with FMX101, 4% may correlate with a lower incidence of treatment-related adverse events.
Example 10 Changes in RosaQoL Index Score at Week 12 from Baseline
RosaQoL (Rosacea Quality of Life) index scores, measuring the impact of rosacea treatment on health-related quality of life, indicated that both doses of FMX103 were significantly better than the vehicle foam in improving the RosaQoL overall score from baseline at Week 12 (p=0.003 and p=0.036, respectively) (FIG. 6). Significant improvement at Week 12 was demonstrated in the symptom subscale scores for both doses of FMX103 and in the emotional subscale scores for FMX103 1.5%, as compared to vehicle foam. Post hoc analyses of global questions to assess patient-reported outcomes showed a similar trend. For the question, “How do you rate your rosacea over the past 4 weeks?”, approximately 52 percent and 54 percent of the FMX103 1.5% and 3% groups, respectively, answered “good” to “excellent,” as compared to approximately 20 percent of subjects in the vehicle foam group at Week 12 (both p<0.001). Approximately 75 percent in both treatment groups also reported “better” to the comparative question, “How is your rosacea compared to the last time you filled out this survey?”, while approximately 42 percent of subjects in the vehicle group at Week 12 answered “better” to the same question (both p<0.001).
Compliance with study drug dosing was high, with rates of 97.5, 94.7, and 98.7 percent in the FMX103 1.5%, FMX103 3%, and vehicle foam groups, respectively. The number of grams of study drug used per day was also similar among treatment groups: 0.36, 0.38, and 0.39 g for FMX103 1.5%, FMX103 3%, and vehicle, respectively.
Having described preferred embodiments of the compositions and methods with reference to the accompanying drawings, it is to be understood that the compositions and methods provided herein are not limited to the precise embodiments, and that various changes and modifications can be effected therein by those skilled in the art without departing from the scope or spirit of the disclosure as defined in the appended claims.

Claims (10)

What is claimed is:
1. A method for treating acne vulgaris in a subject in need thereof, comprising topically administering to the subject a therapeutically effective amount of a breakable foam obtained from a foamable composition once daily for at least seven consecutive days, wherein the foamable composition comprises:
(a) a hydrophobic vehicle comprising:
(i) about 70% to about 90% by weight of a hydrophobic solvent comprising:
about 35% w/w to about 65% w/w of soybean oil;
about 16.5% w/w to about 30.7% w/w of coconut oil;
about 3.5% w/w to about 6.5% w/w of cyclomethicone; and
about 1% w/w to about 6% w/w of light mineral oil; and
(ii) about 10% to about 22% by weight of a foamer complex comprising:
about 2.5% w/w to about 4.6% w/w of cetostearyl alcohol;
about 2% w/w to about 4% w/w of stearic acid;
about 1.8% w/w to about 3.3% w/w of myristyl alcohol;
about 1% w/w to about 3% w/w of hydrogenated castor oil;
about 1% w/w to about 3% w/w of beeswax;
about 1% w/w to about 2% w/w of stearyl alcohol; and
about 0.5% w/w to about 1.5% w/w of behenyl alcohol;
(iii) minocycline in an amount ranging from about 1% w/w to about 4% w/w; and
(b) a propellant in an amount ranging from about 3% to about 25% w/w;
wherein the subject is between 15 years old and 16 years and 11 months old, wherein the foamable composition does not comprise silicon dioxide (SiO2), and wherein the minocycline is present in plasma from the subject at a concentration of at most 1.9 ng/mL before applying the seventh day of treatment with the therapeutically effective amount of the breakable foam.
2. The method of claim 1, wherein the minocycline is present in plasma from the subject at a concentration of about 1.8 ng/mL 3 hours after applying the seventh day of treatment with the therapeutically effective amount of the foam.
3. The method of claim 1, wherein the minocycline is present in plasma from the subject at a concentration of about 1.8 ng/mL 12 hours after applying the seventh day of treatment with the therapeutically effective amount of the foam.
4. The method of claim 1, wherein the minocycline is present in plasma from the subject at a concentration of about 1.6 ng/mL 16 hours after applying the seventh day of treatment with the therapeutically effective amount of the foam.
5. The method of claim 1, wherein the minocycline is present in plasma from the subject at a concentration of about 1.5 ng/mL 24 hours after applying the seventh day of treatment with the therapeutically effective amount of the foam.
6. The method of claim 1, wherein a maximum measured plasma concentration in the subject is reached about 6 hours after a daily topical administration.
7. The method of claim 1, wherein the concentration of minocycline present in plasma from the subject at day 8 is about the same or less than the concentration before applying the seventh day of treatment.
8. The method of claim 1, wherein the plasma concentration is a mean concentration.
9. A method of treating acne vulgaris in a subject in need thereof, comprising topically administering to the subject a therapeutically effective amount of a breakable foam obtained from a foamable composition once daily for at least seven consecutive days, wherein the foamable composition comprises:
(a) a hydrophobic vehicle comprising:
(i) about 70% to about 90% by weight of a hydrophobic solvent comprising:
about 35% w/w to about 65% w/w of soybean oil;
about 16.5% w/w to about 30.7% w/w of coconut oil;
about 3.5% w/w to about 6.5% w/w of cyclomethicone; and
about 1% w/w to about 6% w/w of light mineral oil; and
(ii) about 10% to about 22% by weight of a foamer complex comprising:
about 2.5% w/w to about 4.6% w/w of cetostearyl alcohol;
about 2% w/w to about 4% w/w of stearic acid;
about 1.8% w/w to about 3.3% w/w of myristyl alcohol;
about 1% w/w to about 3% w/w of hydrogenated castor oil;
about 1% w/w to about 3% w/w of beeswax;
about 1% w/w to about 2% w/w of stearyl alcohol; and
about 0.5% w/w to about 1.5% w/w of behenyl alcohol;
(iii) minocycline in an amount ranging from about 1% w/w to about 4% w/w; and
(b) a propellant in an amount ranging from about 3% to about 25% w/w;
wherein the subject is between 15 years old and 16 years and 11 months old, wherein the foamable composition does not comprise silicon dioxide (SiO2), wherein the minocycline is present in plasma from the subject, and wherein an area under a concentration-time curve of the amount of minocycline in the plasma from the subject is 40.8 (ng/mL)*hour or less, as determined during a 24 hour period following a topical administration of the therapeutically effective amount of the breakable foam.
10. The method of claim 9, wherein the area is a mean area.
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11596641B2 (en) 2020-03-24 2023-03-07 Hovione Scientia Limited Methods and compositions for treating meibomian gland dysfunction
RU2796315C1 (en) * 2023-02-13 2023-05-22 федеральное государственное бюджетное образовательное учреждение высшего образования "Ростовский государственный медицинский университет" Министерства здравоохранения Российской Федерации (ФГБОУ ВО РостГМУ Минздрава России) Method of treatment of acne vulgar

Families Citing this family (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IL152486A0 (en) 2002-10-25 2003-05-29 Meir Eini Alcohol-free cosmetic and pharmaceutical foam carrier
US9265725B2 (en) 2002-10-25 2016-02-23 Foamix Pharmaceuticals Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US10117812B2 (en) 2002-10-25 2018-11-06 Foamix Pharmaceuticals Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US8636982B2 (en) 2007-08-07 2014-01-28 Foamix Ltd. Wax foamable vehicle and pharmaceutical compositions thereof
WO2009072007A2 (en) 2007-12-07 2009-06-11 Foamix Ltd. Carriers, formulations, methods for formulating unstable active agents for external application and uses thereof
WO2010125470A2 (en) 2009-04-28 2010-11-04 Foamix Ltd. Foamable vehicle and pharmaceutical compositions comprising aprotic polar solvents and uses thereof
WO2011013009A2 (en) 2009-07-29 2011-02-03 Foamix Ltd. Non surfactant hydro-alcoholic foamable compositions, breakable foams and their uses
WO2011013008A2 (en) 2009-07-29 2011-02-03 Foamix Ltd. Non surface active agent non polymeric agent hydro-alcoholic foamable compositions, breakable foams and their uses
WO2011064631A1 (en) 2009-10-02 2011-06-03 Foamix Ltd. Surfactant-free, water-free, foamable compositions and breakable foams and their uses
US20190307778A1 (en) * 2015-08-20 2019-10-10 Foamix Pharmaceuticals Ltd. Tetracycline management of egfr inhibitor associated dermatoses
FR3041541B1 (en) 2015-09-29 2018-11-30 Galderma Research & Development NON-RINSE CHEMICAL FOAM COMPRISING IVERMECTIN
FR3041535B1 (en) 2015-09-29 2019-01-25 Galderma Research & Development NON-RINSE CHEMICAL FOAM CONTAINING TRIFAROTENE AND USE THEREOF IN THE TREATMENT OF ICHTYOSE
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FR3041537B1 (en) * 2015-09-29 2018-11-30 Galderma Research & Development BRIMONIDINE CONTAINING CHEMICAL FOAM WITHOUT RINSE AND USE THEREOF FOR TREATING ROSACEA.
FR3041536B1 (en) 2015-09-29 2018-11-30 Galderma Research & Development NON-RINSEED CHEMICAL FOAM CONTAINING TRIFAROTENE AND USE THEREOF IN THE TREATMENT OF ACNE
MX2020012139A (en) 2016-09-08 2021-01-29 Vyne Pharmaceuticals Inc Compositions and methods for treating rosacea and acne.
US20200126094A1 (en) * 2018-10-19 2020-04-23 BioIDC, Inc. Medical research fraud detection system and software
US20220110869A1 (en) * 2018-10-29 2022-04-14 Sol-Gel Technologies Ltd. Topical minocycline foamable compositions
US20230346805A1 (en) 2019-07-31 2023-11-02 Journey Medical Corporation Compositions and methods and uses thereof
US20220062308A1 (en) * 2020-08-27 2022-03-03 Hovione Scientia Limited Methods and compositions for treating rosacea
US20220125829A1 (en) * 2020-10-28 2022-04-28 Hovione Scientia Limited Methods and compositions for treating meibomian gland dysfunction, dry eye disease, and related disorders
US20220202841A1 (en) * 2020-12-24 2022-06-30 Erine A. Kupetsky Dermatological formulations for treatment of dermatitis

Citations (1176)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1159250A (en) 1914-05-01 1915-11-02 Frank Moulton Vaginal irrigator.
US1666684A (en) 1926-01-15 1928-04-17 Carstens Mfg Co H Vaginal douche
US1924972A (en) 1929-04-15 1933-08-29 Carl J Beckert Stabilized egg product
US2085733A (en) 1935-07-15 1937-07-06 John C Bird Shaving cream
US2390921A (en) 1943-03-23 1945-12-11 Ethel Hudson Clark Applicator for facial creams
US2524590A (en) 1946-04-22 1950-10-03 Carsten F Boe Emulsion containing a liquefied propellant gas under pressure and method of spraying same
US2586287A (en) 1948-12-11 1952-02-19 Colagte Palmolive Peet Company Aluminum sulfamate antiperspirant preparation
US2617754A (en) 1949-08-29 1952-11-11 Procter & Gamble Cosmetic cream
US2767712A (en) 1954-03-01 1956-10-23 Neil S Waterman Medicinal applicator
GB808104A (en) 1955-01-04 1959-01-28 Udylite Res Corp Electrodeposition of copper from aqueous alkaline cyanide solutions
GB808105A (en) 1956-06-15 1959-01-28 Ici Ltd New pharmaceutical compositions
US2968628A (en) 1958-10-17 1961-01-17 Shulton Inc Propellant composition
US3004894A (en) 1959-04-07 1961-10-17 Upjohn Co Therapeutic composition comprising tetracycline and a dioxolane
US3062715A (en) 1953-11-18 1962-11-06 George S Pfaus Vaginal tablet
US3067784A (en) 1960-04-14 1962-12-11 Esta Medical Lab Inc Adapter connecting aerosol container valve stem to dispenser for filling said dispenser
GB922930A (en) 1959-09-21 1963-04-03 Sunnen Joseph Spermicidal composition and method of making same
US3092255A (en) 1960-02-05 1963-06-04 Robert F Hohman Sorting apparatus
US3092555A (en) 1958-04-21 1963-06-04 Roy H Horn Relatively collapsible aerosol foam compositions
GB933486A (en) 1960-10-26 1963-08-08 Vantorex Ltd Improvements in or relating to aerosol foams
DE1882100U (en) 1963-01-22 1963-11-07 Helene Jeanne Colombe Roger DEVICE WITH A CANULE OR PROBE FOR THE TREATMENT OF PARTICULAR DISEASES OF THE VAGINARY WITH AEROSOLS.
US3141821A (en) 1959-03-17 1964-07-21 Lehn & Fink Products Corp Synergistic combination of alkyl sulfonates, alkylaryl sulfonates and topical antibacterial agents for local antisepsis
US3142420A (en) 1959-11-09 1964-07-28 Neotechnic Eng Ltd Metering dispenser for aerosol with fluid pressure operated piston
US3144386A (en) 1958-05-09 1964-08-11 Merck & Co Inc Mastitis aerosol foam
US3149543A (en) 1963-03-04 1964-09-22 Ingersoll Rand Co Non-lubricated piston
US3154075A (en) 1960-11-02 1964-10-27 Norwich Pharma Co Vaginal applicator
US3178352A (en) 1959-02-27 1965-04-13 Erickson Roy Shaving method and composition therefor
GB998490A (en) 1961-06-03 1965-07-14 Albert Fritz Albach A foam projector
US3236457A (en) 1963-08-21 1966-02-22 John R Kennedy Composite spray container assembly
US3244589A (en) 1962-10-26 1966-04-05 Sunnen Alkyl phenoxy polyethoxy ether spermicidal aerosol
GB1026831A (en) 1963-05-31 1966-04-20 Mediline Ag Preparations for use in feminine hygiene
US3252859A (en) 1962-10-24 1966-05-24 Masti Kure Company Inc Colloidal silica-oil composition and method of using same
GB1033299A (en) 1962-08-03 1966-06-22 Colgate Palmolive Co Pressurized compositions
US3261695A (en) 1962-12-24 1966-07-19 Gen Foods Corp Process for preparing dehydrated foods
US3263867A (en) 1963-12-26 1966-08-02 Valve Corp Of America Metering button-type aerosol actuator
US3263869A (en) 1964-11-03 1966-08-02 Calmar Inc Liquid dispenser with overcap
US3298919A (en) 1962-12-26 1967-01-17 Dow Corning Shaving cream containing polysiloxanes
US3301444A (en) 1965-08-12 1967-01-31 Oel Inc Aerosol metering valve
US3303970A (en) 1964-07-14 1967-02-14 Jerome Marrow Device for simultaneously dispensing from plural sources
US3334147A (en) 1962-02-28 1967-08-01 Economics Lab Defoaming and surface active compositions
US3333333A (en) 1963-08-14 1967-08-01 Rca Corp Method of making magnetic material with pattern of embedded non-magnetic material
GB1081949A (en) 1963-08-12 1967-09-06 Avon Prod Inc Improvements in cosmetic mask
US3342845A (en) 1964-11-05 1967-09-19 Upjohn Co Terphenyl triisocyanates
US3346451A (en) 1965-01-27 1967-10-10 S E Massengill Company Concentrated liquid lactic acid douche preparation containing aromatics
US3366494A (en) 1967-02-15 1968-01-30 Du Pont Pressurized aerosol food emulsions
US3369034A (en) 1964-04-27 1968-02-13 Eversharp Inc Process for separating saponifiables and unsaponifiables in marine animal oils
US3377004A (en) 1966-10-03 1968-04-09 Gen Mills Inc Metered dispensing container
US3383280A (en) 1963-01-09 1968-05-14 Miles Lab Dermatological abradant stick-type applicator
US3384541A (en) 1964-10-28 1968-05-21 William G. Clark Spermicidal vaginal pharmaceutical concentrate for producing nonaqueous foam with aerosol propellants
GB1121358A (en) 1965-10-21 1968-07-24 Bristol Myers Co Aerosol manufacture
US3395215A (en) 1964-10-15 1968-07-30 Colgate Palmolive Co Pressurized lotion composition
US3395214A (en) 1964-01-09 1968-07-30 Scholl Mfg Co Inc Antiperspirant composition providing a readily collapsible sprayable foam
US3401849A (en) 1966-05-24 1968-09-17 Robert L. Weber Low force metering valve
US3419658A (en) 1965-01-25 1968-12-31 Du Pont Nonaqueous aerosol foams containing mineral oil
US3456052A (en) 1965-09-28 1969-07-15 Garrett Lab Inc Aerosol composition containing butoxymonoether of a polyoxyalkylene glycol
GB1162684A (en) 1964-01-13 1969-08-27 Aerosol Inv S & Dev S A A I D Actuator Button for Pressurised Aerosol Dispensing Containers
GB1170152A (en) 1966-01-10 1969-11-12 Rexall Drug Chemical Pressurized Compositions and Method of Preparation therefor
DE1926796A1 (en) 1968-05-27 1970-03-19 Dudiuyt Jean Paul Aerosol compsn. and container
GB1201918A (en) 1966-12-21 1970-08-12 Bespak Industries Ltd Improvements in or relating to valves for pressurised dispensers
US3527559A (en) 1967-01-05 1970-09-08 Standard Pharmacal Corp Dense aqueous aerosol foam depilatory compositions containing a mixture of alkaline metal and alkali metal thioglycolates and a fatty alcohol-alkylene oxide wax emulsifying agent
US3540448A (en) 1968-01-17 1970-11-17 Joseph Sunnen Rechargeable applicator for dispensing substances in a foam condition
US3559890A (en) 1968-09-03 1971-02-02 William R Brooks Foam dispenser
US3561262A (en) 1967-10-26 1971-02-09 Magnaflux Corp Water soluble developer
US3563098A (en) 1968-06-28 1971-02-16 Rex Chainbelt Inc Automatic quick release mechanism
US3577518A (en) 1969-07-18 1971-05-04 Nat Patent Dev Corp Hydrophilic hairspray and hair setting preparations
US3667461A (en) 1968-11-05 1972-06-06 Paul A Zamarra Disposable syringe
US3751562A (en) 1972-09-22 1973-08-07 Princeton Biomedix Medicated gelled oils
US3770648A (en) 1971-07-12 1973-11-06 Bristol Myers Co Anhydrous aerosol foam
US3787566A (en) 1969-07-29 1974-01-22 Holliston Labor Inc Disinfecting aerosol compositions
GB1347950A (en) 1971-03-08 1974-02-27 Bristol Myers Co Antiperspirant aerosol system
GB1351762A (en) 1971-02-14 1974-05-01 Wilkinson Sword Ltd Tobacco and tobacco-containing manufactures
GB1351761A (en) 1971-02-04 1974-05-01 Wilkinson Sword Ltd Substituted p-menthane carboxamides and compositions containing them
GB1353381A (en) 1971-02-04 1974-05-15 Wilkinson Sword Ltd Substituted p-menthanes and compositions containing them
US3819524A (en) 1969-06-17 1974-06-25 Colgate Palmolive Co Cosmetic composition for thermal dispensing
US3824303A (en) 1963-07-24 1974-07-16 Yardley Of London Inc Collapsible foam pre-electric shave lotion containing diester lubricants
US3841525A (en) 1972-06-14 1974-10-15 N Siegel Aerosol spray device with cam activator
US3849569A (en) 1965-12-02 1974-11-19 Glaxo Lab Ltd Composition containing procaine penicillin
US3849580A (en) 1972-09-05 1974-11-19 American Home Prod Aerosol dispensing system for anhydrous edible fat compositions
US3865275A (en) 1973-07-30 1975-02-11 Raymond Lee Organization Inc Apparatus for operating an aerosol can
US3866800A (en) 1969-02-12 1975-02-18 Alberto Culver Co Non-pressurized package containing self-heating products
US3878118A (en) 1968-09-06 1975-04-15 Wilkinson Sword Ltd Self-heating chemical compositions
US3882228A (en) 1969-11-28 1975-05-06 Aspro Nicholas Ltd Analgesic formulations
US3886084A (en) 1966-09-29 1975-05-27 Champion Int Corp Microencapsulation system
GB1397285A (en) 1971-11-26 1975-06-11 Pharmacia Ab Foam forming composition
US3890305A (en) 1971-12-30 1975-06-17 Ciba Geigy Ag Divinyldiphenyl compounds
GB1408036A (en) 1971-09-13 1975-10-01 Treuhandvereinigung Ag Hair preparations
US3912665A (en) 1969-02-06 1975-10-14 Spitzer Joseph G Emulsified propellant compositions for foamed structures such as applicator pads, and process
US3912667A (en) 1971-09-13 1975-10-14 Spitzer Joseph G Structures such as applicator pads for cleaning and other purposes, propellant compositions for forming the same and process
US3923970A (en) 1974-03-29 1975-12-02 Carter Wallace Stable aerosol shaving foams containing mineral oil
US3929985A (en) 1974-01-18 1975-12-30 Richardson Merrell Inc Anhydrous candicidin foam compositions
US3953591A (en) 1974-04-29 1976-04-27 The Procter & Gamble Company Fatty acid, polysiloxane and water-soluble polymer containing skin conditioning emulsion
US3952916A (en) 1975-01-06 1976-04-27 Warner-Lambert Company Automatic dispenser for periodically actuating an aerosol container
US3959160A (en) 1973-05-16 1976-05-25 Wilkinson Sword Limited Aerosol shaving foam compositions
US3962150A (en) 1974-04-10 1976-06-08 Richardson-Merrell Inc. Foam producing cleansing compositions
US3963833A (en) 1972-06-02 1976-06-15 Colgate-Palmolive Company Antiperspirant composition and method containing a dihydro-benzofuran and an astringent metal salt
US3966632A (en) 1974-06-06 1976-06-29 G. D. Searle & Co. Vegetable oil emulsion
US3966090A (en) 1969-02-17 1976-06-29 Dart Industries Inc. Package for dispensing an antiseptic composition
US3970219A (en) 1975-03-03 1976-07-20 Spitzer Joseph G Aerosol containers for foaming and delivering aerosols and process
US3970584A (en) 1973-02-14 1976-07-20 S. C. Johnson & Son, Inc. Aerosol package containing a foam-forming emulsion and propellent system
US3993224A (en) 1975-09-08 1976-11-23 Aerosol Investments, Ltd. Spout for two-component resin dispenser
GB1457671A (en) 1974-01-31 1976-12-08 Wilkinson Sword Ltd Flavour
US3997467A (en) 1971-11-26 1976-12-14 Pharmacia Aktiebolag Foam forming composition
US4001391A (en) 1969-04-18 1977-01-04 Plough, Inc. Means for depositing aerosol sprays in buttery form
US4001442A (en) 1973-07-18 1977-01-04 Elastin-Werk Aktiengesellschaft Collagen-containing preparations
US4018396A (en) 1975-05-05 1977-04-19 Bechtel International Corporation Embedded housing for ore crusher
US4019657A (en) 1975-03-03 1977-04-26 Spitzer Joseph G Aerosol containers for foaming and delivering aerosols
DE2608226A1 (en) 1976-02-28 1977-09-08 Haarmann & Reimer Gmbh AGENTS WITH PHYSIOLOGICAL COOLING EFFECT
US4052513A (en) 1974-12-13 1977-10-04 Plough, Inc. Stable topical anesthetic compositions
GB1489672A (en) 1974-01-25 1977-10-26 Procter & Gamble Oral composition
US4083974A (en) 1977-03-07 1978-04-11 The Upjohn Company Topical steroidal anti-inflammatory preparations containing polyoxypropylene 15 stearyl ether
US4102995A (en) 1976-05-13 1978-07-25 Westwood Pharmaceuticals Inc. Tar gel formulation
US4110426A (en) 1973-07-24 1978-08-29 Colgate-Palmolive Company Method of treating skin and hair with a self-heated cosmetic
US4124149A (en) 1976-07-19 1978-11-07 Spitzer Joseph G Aerosol container with position-sensitive shut-off valve
US4145411A (en) 1974-09-05 1979-03-20 Colgate-Palmolive Company Pressurized foaming shaving composition
GB2004746A (en) 1977-10-03 1979-04-11 Scherico Ltd Compositions containing benzocaine
US4151272A (en) 1976-08-02 1979-04-24 American Cyanamid Company Wax-like antiperspirant stick compositions
US4160827A (en) 1978-02-06 1979-07-10 The Upjohn Company Metronidazole phosphate and salts
IL49491A (en) 1976-04-29 1979-09-30 Rosenberg Peretz Quickly-attachable connector for plastic pipes
US4178373A (en) 1978-08-21 1979-12-11 William H. Rorer, Inc. Coal tar gel composition
GB1561423A (en) 1976-08-25 1980-02-20 Mundipharma Ag Sprayable germicidal foam compositions
JPS5569682A (en) 1978-11-20 1980-05-26 Toyo Aerosol Kogyo Kk Foam shrinkable composition
US4214000A (en) 1978-10-30 1980-07-22 Johnson & Johnson Zinc salt of all-trans-retinoic acid for the treatment of acne
US4213979A (en) 1978-12-18 1980-07-22 Plough, Inc. Stable sprayable hydrocortisone product
US4226344A (en) 1979-02-06 1980-10-07 Booth, Inc. Constant flow valve actuator
US4229432A (en) 1978-04-19 1980-10-21 Bristol-Myers Company Antiperspirant stick composition
US4230701A (en) 1979-03-21 1980-10-28 Hoffmann-La Roche Inc. Administration of biologically active vitamin D3 and vitamin D2 materials
FR2456522A1 (en) 1979-05-18 1980-12-12 Kao Corp Insulin compsns. for admin via mucosa - contg. selected acids to increase absorption pref. also contg. a surfactant and a protease inhibitor
US4241149A (en) 1979-07-20 1980-12-23 Temple University Canal clathrate complex solid electrolyte cell
US4241048A (en) 1979-05-01 1980-12-23 Bristol-Myers Company Suspension composition of benzocaine
US4252787A (en) 1976-12-27 1981-02-24 Cambridge Research And Development Group Anti-fertility composition and method
US4254104A (en) 1974-11-12 1981-03-03 Shiseido Co., Ltd. Process for preparing stable oil-in-water emulsions
JPS5639815A (en) 1979-09-04 1981-04-15 Toyota Motor Corp Broaching machine
US4268499A (en) 1979-06-07 1981-05-19 Dow Corning Corporation Antiperspirant emulsion compositions
US4271149A (en) 1979-09-21 1981-06-02 West Agro-Chemical, Inc. Germicidal iodine compositions with enhanced iodine stability
US4278206A (en) 1979-04-13 1981-07-14 Ae Development Corporation Non-pressurized dispensing system
US4292250A (en) 1980-11-17 1981-09-29 Wisconsin Alumni Research Foundation Vitamin D derivatives
US4292326A (en) 1977-12-30 1981-09-29 Nazzaro Porro Marcella Process for treatment of hyperpigmentary dermatoses
US4299826A (en) 1979-10-12 1981-11-10 The Procter & Gamble Company Anti-acne composition
US4305936A (en) 1980-10-09 1981-12-15 Dermik Laboratories Topical corticosteroid formulations
US4309995A (en) 1980-01-28 1982-01-12 Sacco Susan M Vaginal irrigation apparatus
US4310510A (en) 1976-12-27 1982-01-12 Sherman Kenneth N Self administrable anti-fertility composition
JPS5744429A (en) 1980-07-31 1982-03-12 Kobe Steel Ltd Pipe expanding method by drawing
US4323694A (en) 1981-04-13 1982-04-06 Finetex, Inc. Benzoic acid esters
US4323582A (en) 1980-07-21 1982-04-06 Siegel Norman H Method of treating animals and humans for internal and external parasites
US4325939A (en) 1980-09-22 1982-04-20 Richardson-Vicks Inc. Zinc derivatives and their use in dental compositions
US4329990A (en) 1980-08-07 1982-05-18 Sneider Vincent R Expanding swab applicator
EP0052404A2 (en) 1980-11-19 1982-05-26 THE PROCTER &amp; GAMBLE COMPANY Non-yellowing topical pharmaceutical composition
WO1982001821A1 (en) 1980-11-27 1982-06-10 Kovacs Andras Antimycotic synergistic pharmaceutical compositions and process for the preparation thereof
US4335120A (en) 1979-03-21 1982-06-15 Hoffmann-La Roche Inc. Administration of biologically active vitamin D3 and vitamin D2 materials
US4338211A (en) 1980-06-30 1982-07-06 The Procter & Gamble Company Liquid surfactant skin cleanser with lather boosters
US4352808A (en) 1980-12-12 1982-10-05 Schering Corporation 3-Aralkyloxy-2,3-dihydro-2-(imidazolylmethyl)benzo(b)thiophenes and related derivatives, their use as antimicrobials and pharmaceutical formulations useful therefore
US4363806A (en) 1980-06-19 1982-12-14 Aktiebolaget Draco Pharmaceutical composition
US4385161A (en) 1980-01-10 1983-05-24 Imperial Chemical Industries Limited Olefine polymerization process
US4386104A (en) 1977-04-19 1983-05-31 Nazzaro Porro Marcella Process for the treatment of acne
US4393066A (en) 1981-06-05 1983-07-12 Garrett David M Method for treatment of herpetic lesions
GB2114580A (en) 1982-02-16 1983-08-24 Oreal Composition intended for treating the hair skin or nails containing at least one cationic polymer and at least one anionic latex
CH639913A5 (en) 1979-03-16 1983-12-15 Aerosol Service Ag Container for receiving and delivering a liquid substance
US4427670A (en) 1980-03-27 1984-01-24 Mitsubishi Chemical Industries Limited Skin preparation
US4439416A (en) 1973-03-23 1984-03-27 Colgate-Palmolive Company Self-heating shaving composition
US4439441A (en) 1979-01-11 1984-03-27 Syntex (U.S.A.) Inc. Contraceptive compositions and methods employing 1-substituted imidazole derivatives
US4440320A (en) 1981-11-30 1984-04-03 Wernicke Steven A Foam dispensing apparatus
US4447486A (en) 1979-08-02 1984-05-08 Bayer Aktiengesellschaft Surface-sealed moldings of cellular polyurethane elastomers and a process for their production
US4469674A (en) 1981-09-03 1984-09-04 Richardson-Vicks Inc. Stable oral compositions containing zinc and fluoride compounds
JPS601113A (en) 1983-06-20 1985-01-07 Kao Corp Hair-nourishing and hair-growing agent
US4508705A (en) 1980-07-02 1985-04-02 Lever Brothers Company Skin treatment composition
US4522948A (en) 1981-04-24 1985-06-11 Syntex (U.S.A.) Inc. Spermicidal substituted 1-(cycloalkyl)alkylimidazoles
US4529601A (en) 1977-12-01 1985-07-16 Astra Lakemedel Aktiebolag Local anesthetic mixture for topical application and method for obtaining local anesthesia
US4529605A (en) 1983-01-12 1985-07-16 Una E. Lynch Bathing oil composition
EP0156507A1 (en) 1984-02-23 1985-10-02 Ortho Pharmaceutical Corporation Antifungal dermatological solution
US4552872A (en) 1983-06-21 1985-11-12 The Procter & Gamble Company Penetrating topical pharmaceutical compositions containing corticosteroids
US4574052A (en) 1984-05-31 1986-03-04 Richardson-Vicks Inc. Crackling aerosol foam
US4576961A (en) 1980-12-03 1986-03-18 Lorck Henning O B Antibiotic heterocyclic oxygen compounds and use
GB2166651A (en) 1984-10-30 1986-05-14 Elan Corp Plc Controlled release powder and process for its preparation
US4595526A (en) 1984-09-28 1986-06-17 Colgate-Palmolive Company High foaming nonionic surfacant based liquid detergent
EP0186453A2 (en) 1984-12-20 1986-07-02 Warner-Lambert Company A non-irritating cleansing composition
US4603812A (en) 1978-06-27 1986-08-05 The Dow Chemical Company Foam-generating pump sprayer
US4607101A (en) 1981-08-27 1986-08-19 Jaye-Boern Laboratories, Inc. Method of treating acne vulgaris with a composition containing carbamide peroxide
US4612193A (en) 1983-12-23 1986-09-16 Del Laboratories, Inc. Sty ointment and method of using the same
WO1986005389A1 (en) 1985-03-18 1986-09-25 Product Resources International, Inc. Exothermic stable foam compositions
JPS61275395A (en) 1985-03-01 1986-12-05 ザ、プロクタ−、エンド、ギヤンブル、カンパニ− Gentle cleaning mooth having benefit imparting skin feeling and dampness
US4627973A (en) 1984-12-14 1986-12-09 Charles Of The Ritz Group Ltd. Skin mousse
US4628063A (en) 1984-03-08 1986-12-09 Dana P. Brigham Antiviral pharmaceutical preparations and methods for their use
EP0213827A2 (en) 1985-08-14 1987-03-11 The Procter & Gamble Company Nonfoaming cleansing mousse with skin conditioning benefits
EP0214865A2 (en) 1985-09-11 1987-03-18 Chesebrough-Pond's Inc. High oil containing anhydrous foamable compositions
US4661340A (en) 1983-06-06 1987-04-28 Interkemia Vegyipari Gazdasagi Tarsasag Quail egg based stabilized foam compositions for cosmetic purposes
US4661524A (en) 1984-06-29 1987-04-28 Beecham Group P.L.C. Topical treatment and composition
US4672078A (en) 1985-07-03 1987-06-09 Schering-Plough Corporation Urea stabilized with a lactone in various pharmaceutical and cosmetic preparations
FR2591331A1 (en) 1985-12-10 1987-06-12 Drevet Jean Baptiste Device for dispensing metered portions of a product contained in a pressurised receptacle
US4673569A (en) 1985-02-12 1987-06-16 Faberge Incorporated Mousse hair composition
US4678463A (en) 1984-03-01 1987-07-07 Millar Thomas D Devices for insertion into a body cavity of an animal and/or applicators therefor
GB2153686B (en) 1984-02-02 1987-07-22 Dunlop Ltd Intravaginal device
US4701320A (en) 1984-11-29 1987-10-20 Lederle (Japan), Ltd. Composition stably containing minocycline for treating periodontal diseases
JPS62241701A (en) 1986-04-11 1987-10-22 Maeda Kogyo Kk Quick releasing device for hub for bicycle
US4725609A (en) 1983-11-21 1988-02-16 Burroughs Wellcome Co. Method of promoting healing
WO1988001502A1 (en) 1986-09-05 1988-03-10 The Upjohn Company Sebum-dissolving nonaqueous minoxidil formulation
WO1988001863A1 (en) 1986-09-12 1988-03-24 The Upjohn Company Foams for delivery of minoxidil
US4738396A (en) 1986-06-18 1988-04-19 Matsuda K. K. Vehicle air conditioner
US4741855A (en) 1984-11-09 1988-05-03 The Procter & Gamble Company Shampoo compositions
JPS63119420A (en) 1986-11-08 1988-05-24 Hisamitsu Pharmaceut Co Inc Foamy aerosol anti-inflammatory analgesic preparation
EP0270316A2 (en) 1986-12-04 1988-06-08 Pfizer Inc. Topical compositions comprising 1-substituted imidazoles and NSAIDs for treatment of acne
US4752465A (en) 1985-09-20 1988-06-21 Product Resources International, Inc. Aerosol foam
US4770634A (en) 1986-06-11 1988-09-13 Pellico Michael A Method for treating teeth with foamable fluoride compositions
US4772427A (en) 1987-12-01 1988-09-20 Colgate-Palmolive Co. Post-foaming gel shower product
US4780309A (en) 1987-06-16 1988-10-25 Warner-Lambert Company Edible aerosol foam compositions and method of preparing same
WO1988008316A1 (en) 1987-04-21 1988-11-03 Chattan Nominees Pty. Ltd. Vaginal douche
US4784842A (en) 1987-09-25 1988-11-15 Jean London Therapeutic composition for treatment of cuts, burns and abrasions
US4792062A (en) 1986-05-09 1988-12-20 L'oreal Package for two pressurized receptacles
GB2206099A (en) 1987-05-13 1988-12-29 Valois A metering valve for a liquid charged with a propellent liquid of liquified gas and usable in the upsidedown position
EP0297436A2 (en) 1987-07-02 1989-01-04 Carl Richard Thornfeldt Treatment of hyperhidrosis and ichthyosis
US4798682A (en) 1985-06-18 1989-01-17 Henkel Kommanditgesellschaft Auf Aktien Oil-in-water emulsions with increased viscosity under shear stress
US4804674A (en) 1986-03-26 1989-02-14 Euroceltique, S.A. Vaginal pharmaceutical composition
US4806262A (en) 1985-08-14 1989-02-21 The Procter & Gamble Company Nonlathering cleansing mousse with skin conditioning benefits
US4808388A (en) 1986-08-20 1989-02-28 Merz + Co. Gmbh & Co. Foamable creams
JPH01100111A (en) 1987-08-06 1989-04-18 Johnson & Johnson Consumer Prod Inc Skin care composition
US4822614A (en) 1986-12-19 1989-04-18 S. C. Johnson & Son, Inc. Bioactive film-forming composition for control of crawling insects and the like
US4822613A (en) 1986-12-15 1989-04-18 S. C. Johnson & Son, Inc. Water-soluble foamable insecticidally-active compositions
US4827378A (en) 1988-06-15 1989-05-02 Rockwell International Corporation Jack coaxial connector EMI shielding apparatus
US4826048A (en) 1986-04-29 1989-05-02 Ing. Erich Pfeiffer Gmbh & Co. Kg Dispenser for manually discharging plural media
US4828837A (en) 1987-03-30 1989-05-09 Liposome Technology, Inc. Non-crystalline minoxidil composition, its production and application
US4837019A (en) 1986-08-11 1989-06-06 Charles Of The Ritz Group Ltd. Skin treatment composition and method for treating burned skin
US4837378A (en) 1986-01-15 1989-06-06 Curatek Pharmaceuticals, Inc. Topical metronidazole formulations and therapeutic uses thereof
US4836217A (en) 1984-10-01 1989-06-06 Fischer Torkel I Hypersensitivity test means
JPH01156906A (en) 1987-09-23 1989-06-20 L'oreal Sa Skin-conditioning aerosol foam composition
US4844902A (en) 1987-02-17 1989-07-04 Bayer Aktiengesellschaft Topically applicable formulations of gyrase inhibitors in combination with corticosteroids
US4849211A (en) 1988-03-16 1989-07-18 Schrauzer Gerhard N Product and method for the treatment of acne and other skin disorders
US4849117A (en) 1987-06-17 1989-07-18 Sanitek Products, Inc. Concentrated composition for forming an aqueous foam
US4851154A (en) 1987-04-10 1989-07-25 L'oreal Detergent and foaming cosmetic composition delaying the regreasing of hair
US4855294A (en) 1988-09-06 1989-08-08 Theratech, Inc. Method for reducing skin irritation associated with drug/penetration enhancer compositions
US4863900A (en) 1987-01-15 1989-09-05 The Research Foundation Of State University Of New York Method for reducing viral transmission with poly-L-histidine
US4867967A (en) 1987-06-04 1989-09-19 Crutcher Wilbert L Method for the treatment of pseudofolliculitis barbae
US4873078A (en) 1988-04-22 1989-10-10 Plough, Inc. High-gloss, high-shine lipstick
EP0336812A2 (en) 1988-03-31 1989-10-11 L'oreal Association of pyrimidine derivatives and urea and/or allantoin derivatives to induce and stimulate hair growth and to reduce hair loss
US4874794A (en) 1989-04-28 1989-10-17 Lidak Biopharmaceuticals Inflammatory disease treatment
US4876083A (en) 1986-09-15 1989-10-24 L'oreal Composition in the form of an aerosol foam, based on a polymer derived from quaternized cellulose and an anionic polymer
US4877805A (en) 1985-07-26 1989-10-31 Kligman Albert M Methods for treatment of sundamaged human skin with retinoids
US4897262A (en) 1988-03-22 1990-01-30 Playtex Jhirmack, Inc. Non-aerosol hair spray composition
US4902281A (en) 1988-08-16 1990-02-20 Corus Medical Corporation Fibrinogen dispensing kit
US4906453A (en) 1986-08-12 1990-03-06 Jumpeer Nails, Inc. Mousse product
US4913893A (en) 1987-08-28 1990-04-03 Clairol Incorporated Aerosol hair setting composition containing an alginate
US4919934A (en) 1989-03-02 1990-04-24 Richardson-Vicks Inc. Cosmetic sticks
WO1990005774A1 (en) 1988-11-14 1990-05-31 Imaginative Research Associates, Inc. Self-foaming oil compositions and process for making and using same
US4933330A (en) 1987-04-01 1990-06-12 Dak-Laboratoriet Benzoic acid derivatives and use thereof
FR2640942A1 (en) 1988-12-23 1990-06-29 Suchard Sa Jacobs Container of the aerosol type for delivering, in the form of a foam, metered quantities of product, particularly of food product
JPH02184614A (en) 1989-01-11 1990-07-19 Kobayashi Kose Co Ltd Foamy anhydrous cosmetic
US4950420A (en) 1988-08-31 1990-08-21 Nalco Chemical Company Antifoam/defoamer composition
US4954487A (en) 1979-01-08 1990-09-04 The Procter & Gamble Company Penetrating topical pharmaceutical compositions
US4956049A (en) 1984-08-06 1990-09-11 Ciba-Geigy Corporation Process for sizing paper with anionic hydrophobic sizing agents and cationic retention aids
US4957732A (en) 1988-12-29 1990-09-18 L'oreal Shaving composition for the skin based on polyorgano-siloxanes containing an acyloxyalkyl group and process for use
US4963351A (en) 1989-12-26 1990-10-16 Bhn Associates Shaving aid
JPH02255890A (en) 1988-12-28 1990-10-16 Osaka Aerosol Ind Corp Aerosol composition
US4965063A (en) 1985-05-24 1990-10-23 Irene Casey Cleaner and disinfectant with dye
US4966779A (en) 1989-12-21 1990-10-30 Basf Corporation Stable, water miscible emulsion comprising a fat-soluble vitamin
US4970067A (en) 1988-12-12 1990-11-13 Helene Curtis, Inc. Method and composition to condition hair and impart semi-permanent hair set retention properties
US4975466A (en) 1986-06-05 1990-12-04 Ciba-Geigy Corporation Pharmaceutical preparations for topical application and their use in the treatment of inflammatory skin diseases
US4981679A (en) 1983-06-08 1991-01-01 Briggs Joseph H Method and composition for the treatment of burns
US4981845A (en) 1988-09-09 1991-01-01 Chesebrough Pond's U.S.A. Co., Division Of Conopco, Inc. Cosmetic composition
US4981367A (en) 1989-07-28 1991-01-01 Stranco, Inc. Portable mixing apparatus
US4981677A (en) 1987-09-23 1991-01-01 L'oreal Petrolatum-containing aerosol foam concentrate
US4985459A (en) 1984-02-08 1991-01-15 Richardson-Vicks, Inc. Analgesic and anti-inflammatory compositions comprising diphenhydramine and methods of using same
US4992478A (en) 1988-04-04 1991-02-12 Warner-Lambert Company Antiinflammatory skin moisturizing composition and method of preparing same
US4993496A (en) 1987-07-06 1991-02-19 Total Walther Feuerschutz Gmbh Quick release valve for sprinkler head
US4996193A (en) 1989-03-03 1991-02-26 The Regents Of The University Of California Combined topical and systemic method of administration of cyclosporine
JPH0350289A (en) 1989-07-17 1991-03-04 Shiseido Co Ltd Non-emulsion type foam aerosol composition
EP0414920A1 (en) 1989-03-17 1991-03-06 Taisho Pharmaceutical Co. Ltd Aerosol preparation for external use
US5002680A (en) 1985-03-01 1991-03-26 The Procter & Gamble Company Mild skin cleansing aerosol mousse with skin feel and moisturization benefits
US5002540A (en) 1989-05-22 1991-03-26 Warren Kirschbaum Intravaginal device and method for delivering a medicament
EP0211550B1 (en) 1985-08-01 1991-04-10 Deutsche Ici Gmbh Composition for personal care products comprising alkoxylated fatty alcohol and polysiloxane
US5007556A (en) 1990-04-18 1991-04-16 Block Drug Company, Inc. Metering dispenser
US5015471A (en) 1988-12-01 1991-05-14 Chesebrough-Pond's Usa Co., Division Of Conopco, Inc. Topical composition
US5019375A (en) 1989-03-14 1991-05-28 The Procter & Gamble Company Low residue antiperspirant creams
US5034220A (en) 1990-06-20 1991-07-23 Gaf Chemicals Corporation Non-aerosol shaving gel
US5035895A (en) 1988-01-22 1991-07-30 Eisai Co., Ltd. Emulsified and solubilized pharmaceutical preparation
EP0216856B1 (en) 1985-03-18 1991-07-31 Product Resources International, Inc. Aerosol foam
WO1991011991A1 (en) 1990-02-09 1991-08-22 Kabi Pharmacia Ab Foamable composition for pharmaceutical use, use thereof and method of treatment
US5053228A (en) 1989-08-18 1991-10-01 W. R. Grace & Co.-Conn. Polymeric temperature sensitive drug carrier
EP0454102A2 (en) 1988-06-10 1991-10-30 Efamol Holdings Plc Essential fatty acid compositions
US5071881A (en) 1989-05-23 1991-12-10 Imperial Chemical Industries Plc Co2 blown integral skin foams
US5071648A (en) 1989-04-06 1991-12-10 Merocel Corporation Polymeric broad-spectrum antimicrobial materials
US5073371A (en) 1990-11-30 1991-12-17 Richardson-Vicks, Inc. Leave-on facial emulsion compositions
WO1992000077A1 (en) 1990-06-28 1992-01-09 Medicis Corporation Improved ointment base and method of use
US5082651A (en) 1989-04-26 1992-01-21 Smith Kline & French Laboratories Limited Pharmaceutical compositions
US5087618A (en) 1982-05-18 1992-02-11 University Of Florida Redox carriers for brain-specific drug delivery
US5089252A (en) 1982-01-15 1992-02-18 L'oreal Cosmetic composition for treating keratin fibres, and process for treating the latter
JPH0451958A (en) 1990-06-18 1992-02-20 Mitsubishi Materials Corp Treating agent for circulation type toilet filth
US5091111A (en) 1990-09-19 1992-02-25 S. C. Johnson & Son, Inc. Aqueous emulsion and aersol delivery system using same
US5094853A (en) 1985-04-26 1992-03-10 S. C. Johnson & Son, Inc. Method of preparing a water-soluble stable arthropodicidally-active foam matrix
EP0326196B1 (en) 1988-01-14 1992-03-25 Akzo N.V. Aqueous pharmaceutical preparation
US5100917A (en) 1989-12-29 1992-03-31 Merrell Dow Pharmaceuticals Inc. Novel a-nor-steroid-3-carboxylic acid derivatives
WO1992005142A1 (en) 1990-09-14 1992-04-02 Minnesota Mining And Manufacturing Company Process for preparing tertiary perfluoroamines
US5104645A (en) 1990-02-02 1992-04-14 The Proctor & Gamble Company Antidandruff shampoo compositions
WO1992005763A1 (en) 1990-10-04 1992-04-16 Beecham Group Plc Composition containing steroid derivatives
US5112359A (en) 1990-06-04 1992-05-12 Clairol, Inc. Hair colorants
EP0485299A1 (en) 1990-11-09 1992-05-13 L'oreal Aerosol foam anhydrous cosmetic composition
EP0484530A1 (en) 1989-07-28 1992-05-13 Hisamitsu Pharmaceutical Co., Inc. Foamed aerosol preparation
US5114718A (en) 1990-09-20 1992-05-19 The Procter & Gamble Company Sustained release compositions for treating periodontol disease
EP0488089A1 (en) 1990-11-30 1992-06-03 Kali-Chemie Pharma GmbH Diclofenac preparations for topical use
US5122519A (en) 1989-06-27 1992-06-16 American Cyanamid Company Stable, cosmetically acceptable topical gel formulation and method of treatment for acne
US5130121A (en) 1990-04-17 1992-07-14 Isp Investments Inc. Skin care compositions containing discrete microdroplets of an oil in water stabilized by in situ polymerization of water-soluble vinyl monomer
WO1992011839A1 (en) 1991-01-08 1992-07-23 Leonard Mackles Anhydrous aerosol
US5133972A (en) 1989-07-07 1992-07-28 Ciba-Geigy Corporation Topically administrable pharmaceutical preparations
US5135915A (en) 1988-10-14 1992-08-04 Genentech, Inc. Method for the treatment of grafts prior to transplantation using TGF-.beta.
US5137714A (en) 1988-05-13 1992-08-11 Unilever Patent Holdings B.V. Anhydrous cosmetic composition comprising stable lower alkyl esters of pyroglutamic acid
WO1992013602A1 (en) 1991-02-05 1992-08-20 Buil Juergen Fire extinguishing and protection agent
US5143717A (en) 1987-12-30 1992-09-01 Code Blue Medical Corporation Burn foam and delivery system
JPH04282311A (en) 1991-03-08 1992-10-07 Koike Kagaku Kk Aerosol-type foamable wound-disinfectant
US5156765A (en) 1990-05-15 1992-10-20 Fox Valley Systems, Inc. Aerosol foam marking compositions
US5160665A (en) 1988-12-27 1992-11-03 Osaka Aerosol Industries Corporation Aerosol composition exhibiting crackling sound using aliphatic hydrocarbon propellants
JPH04312521A (en) 1991-04-11 1992-11-04 Okamoto Ind Inc Mousse-like lubricant
US5164367A (en) 1990-03-26 1992-11-17 Procyte Corporation Method of using copper(ii) containing compounds to accelerate wound healing
US5164357A (en) 1991-06-05 1992-11-17 Appleton Papers Inc. Thermally-responsive record material
US5167950A (en) 1991-03-28 1992-12-01 S. C. Johnson & Son High alcohol content aerosol antimicrobial mousse
US5171577A (en) 1989-02-09 1992-12-15 L'oreal Process for the preparation of foams which can be used in the cosmetics and pharmaceutical field and foams obtained by this process
CA2114537A1 (en) 1991-07-30 1993-02-18 Jutta Riedl Transdermal therapeutic systems
EP0528190A1 (en) 1991-08-21 1993-02-24 Bruno Jesswein Two-component pressurised container especially for two-component foams
JPH0570340A (en) 1991-09-12 1993-03-23 Kao Corp Anhydrous foam cleaning and wiping agent
US5196405A (en) 1987-07-08 1993-03-23 Norman H. Oskman Compositions and methods of treating hemorrhoids and wounds
US5204090A (en) 1991-05-30 1993-04-20 Bristol Myers Squibb Waterproof high-SPF sunscreen compositions
US5204093A (en) 1989-04-06 1993-04-20 Victor Steven A Shaving cream composition for the treatment of acne vulgaris and pseudofolliculitis barbae and method of producing and using same
US5208031A (en) 1989-06-06 1993-05-04 Kelly Patrick D Sexual lubricants containing zinc as an anti-viral agent
US5217707A (en) 1988-06-16 1993-06-08 Chinoin Gyogyszer Es Vegyeszeti Termekek Gyara Rt. Pharmaceutical composition and process for the preparation thereof
US5219877A (en) 1989-09-25 1993-06-15 Bristol-Myers Squibb Company Lauryl alcohol as skin penetration enhancer for topical imidazole agents
DE4140474A1 (en) 1991-12-09 1993-06-17 Schuelke & Mayr Gmbh Glycerin monoalkyl ether used as skincare additives in cosmetic compsn. - prevents drying of skin, regulates moisture content and gives pleasant feel
US5221534A (en) 1989-04-26 1993-06-22 Pennzoil Products Company Health and beauty aid compositions
US5221696A (en) 1989-03-29 1993-06-22 Alcon Laboratories, Inc. Use of monoacyl phosphoglycerides to enhance the corneal penetration of ophthalmic drugs
US5221530A (en) 1991-06-24 1993-06-22 Helene Curtis, Inc. Mild conditioning shampoo with a high foam level containing an anionic surfactant-cationic acrylate/acrylamide copolymer conditioning agent
US5230897A (en) 1991-10-31 1993-07-27 G. D. Searle & Co. Transdermal pentamidine
EP0552612A2 (en) 1992-01-22 1993-07-28 F. Hoffmann-La Roche Ag Methods for determining and isolating compounds which bind directly to nucleosolic proteins
US5236707A (en) 1991-11-08 1993-08-17 Dallas Biotherapeutics, Inc. Stabilization of human interferon
JPH05213734A (en) 1992-01-31 1993-08-24 Tokushu Aerosol Kk Aerosol massage agent
US5252246A (en) 1992-01-10 1993-10-12 Allergan, Inc. Nonirritating nonionic surfactant compositions
US5254334A (en) 1992-05-04 1993-10-19 Imaginative Research Associates, Inc. Anhydrous foaming composition containing low concentrations of detergents and high levels of glycerin amd emollients such as oils and esters
US5262407A (en) 1988-12-16 1993-11-16 L'oreal Use of salicylic derivatives for the treatment of skin aging
EP0569773A2 (en) 1992-05-04 1993-11-18 Imaginative Research Associates Inc. Anhydrous foaming composition containing low concentrations of detergents and high levels of glycerin and emollients such as oils and esters
US5266592A (en) 1991-04-05 1993-11-30 Haarmann & Reimer Gmbh Compositions which have a physiological cooling effect, and active compounds suitable for these compositions
US5279819A (en) 1991-03-18 1994-01-18 The Gillette Company Shaving compositions
US5294365A (en) 1991-12-12 1994-03-15 Basf Corporation Hydroxypolyethers as low-foam surfactants
EP0404376B1 (en) 1989-06-06 1994-03-23 CURATEK PHARMACEUTICALS Limited Partnership Buffered metronidazole compositions for intravaginal treatment of vaginal infections
WO1994006440A1 (en) 1992-09-14 1994-03-31 Smith Walter P Skin-conditioning composition, its application and manufacture
US5300286A (en) 1992-07-14 1994-04-05 Dow Corning Corporation Silicone emulsion for personal care application
JPH06100414A (en) 1992-09-18 1994-04-12 Osaka Aerosol Ind Corp Composition for aerosol
US5301841A (en) 1991-01-29 1994-04-12 Ing. Erich Pfeiffer Gmbh & Co. Kg Media discharge apparatus for housing a movable reservoir
US5308643A (en) 1992-11-30 1994-05-03 Osipow Lloyd I Self-lather generating shaving compositions
US5314904A (en) 1991-12-17 1994-05-24 Alfa Wassermann S.P.A. Pharmaceutical compositions containing rifaximin for treatment of vaginal infections
EP0598412A2 (en) 1992-11-19 1994-05-25 MEDICON GESELLSCHAFT FÜR UNTERNEHMENSBERATUNG IM BEREICH MEDIZIN UND GESUNDHEITSWESEN mbH Skinprotection composition
US5318774A (en) 1992-02-28 1994-06-07 Richardson-Vicks Inc. Composition and method for imparting an artificial tan to human skin
US5322683A (en) 1989-05-01 1994-06-21 Leonard Mackles Anhydrous aerosol foam
US5326557A (en) 1993-04-06 1994-07-05 Dow Corning Corporation Moisturizing compositions containing organosilicon compounds
US5344051A (en) 1992-04-27 1994-09-06 Insta-Foam Products, Inc. Two-component foam dispensing apparatus
US5346135A (en) 1992-06-16 1994-09-13 Vincent Edward C Spraying apparatus for blending liquids in a gaseous spray system
JPH06263630A (en) 1993-03-10 1994-09-20 Lion Corp Vitamin as-solubilizing eye drop
US5369131A (en) 1991-04-24 1994-11-29 Poli Industria Chimica S.P.A. Oral, cutaneous and intravaginal pharmaceutical compositions in the form of foam
JPH06329532A (en) 1993-05-24 1994-11-29 Osaka Zosenjo:Kk Water-in-oil aerosol composition and production process thereof
US5378451A (en) 1989-10-19 1995-01-03 Dow B. Hickam, Inc. Topical medicinal pressurized aerosol compositions and method of preparation, method of use and article of manufacture thereof
US5378730A (en) 1988-06-09 1995-01-03 Alza Corporation Permeation enhancer comprising ethanol and monoglycerides
US5380761A (en) 1991-04-15 1995-01-10 Chinoin Gyogyszer- Es Vegyeszeti Termekek Gyara Rt. Transdermal compositions
US5384308A (en) 1993-06-14 1995-01-24 Henkin; R. I. Composition and method for enhancing wound healing
US5385943A (en) 1988-03-30 1995-01-31 Schering Aktiengesellschaft Use of topically applicable preparations for treatment of presbyderma
US5389676A (en) 1991-03-22 1995-02-14 E. B. Michaels Research Associates, Inc. Viscous surfactant emulsion compositions
US5389305A (en) 1992-06-03 1995-02-14 Colgate Palmolive Co. High foaming nonionic surfactant base liquid detergent
US5397312A (en) 1992-05-15 1995-03-14 Akzo N.V. Applicator for introducing a cream-type substance into a woman's vagina
US5398846A (en) 1993-08-20 1995-03-21 S. C. Johnson & Son, Inc. Assembly for simultaneous dispensing of multiple fluids
US5399205A (en) 1992-12-22 1995-03-21 Taiho Industries Co., Ltd. Method for cleansing and lustering a surface
US5411992A (en) 1991-01-18 1995-05-02 Clilco Ltd. Lice repellant composition
US5422361A (en) 1989-12-20 1995-06-06 Schering Corporation Stable cream and lotion bases for lipophilic drug compositions
EP0391124B1 (en) 1989-04-05 1995-06-21 Kao Corporation Cosmetic composition of double emulsion type
US5429815A (en) 1994-04-11 1995-07-04 Chesebrough-Pond's Usa Co., Division Of Conopco, Inc. Stable single-phase self-foaming cleanser
EP0662431A2 (en) 1994-01-04 1995-07-12 Adolf Würth GmbH & Co. KG Refillable dispensing container, filling device and method of filling the dispensing containers
US5439670A (en) 1989-11-28 1995-08-08 Riker Laboratories, Inc. Medicinal aerosol formulations
US5439682A (en) 1991-11-22 1995-08-08 Richardson-Vicks Inc. Combined personal cleansing and moisturizing compositions
JPH07215835A (en) 1994-02-03 1995-08-15 Noevir Co Ltd Aerosol foam cosmetic
US5447725A (en) 1993-06-11 1995-09-05 The Procter & Gamble Company Methods for aiding periodontal tissue regeneration
US5449520A (en) 1990-07-27 1995-09-12 Giuliani S.P.A. Pharmaceutical composition for rectal administration of active principles exhibiting a prevalently topical medication action at the colon level
US5451404A (en) 1992-05-18 1995-09-19 The Procter & Gamble Company Coolant compositions
US5482965A (en) 1991-03-19 1996-01-09 Rajadhyaksha; Vithal J. Compositions and method comprising aminoalcohol derivatives as membrane penetration enhancers for physiological active agents
CA2154438A1 (en) 1994-07-20 1996-01-21 Jerry Collins Method and composition for treating psoriasis
WO1996003115A1 (en) 1994-07-21 1996-02-08 Tillotts Pharma Ag Aqueous foamable composition
US5491245A (en) 1993-03-26 1996-02-13 Th. Goldschmidt Ag Method for the synthesis of amphoteric surfactants
JPH0840899A (en) 1994-07-29 1996-02-13 Tokyo Tanabe Co Ltd Aerosol of oxyconazone nitrate
JPH08501529A (en) 1992-06-11 1996-02-20 セラテック・インコーポレイテッド Use of glycerin to alleviate skin-penetrating drug administration
US5500211A (en) 1994-09-22 1996-03-19 The Gillette Company Soap-free self-foaming shave gel composition
US5508033A (en) 1989-12-06 1996-04-16 Societe D'engrais Composes Mineraux Et Amendments Utilization of algae extract for the preparation of pharmaceutical, cosmetic, food or agricultural compositions
US5512555A (en) 1994-07-21 1996-04-30 Merck & Co., Inc. Method of treating sweat-related conditions using finasteride, epristeride and a cholestan-3-one
US5514367A (en) 1994-02-28 1996-05-07 Estee Lauder, Inc. Skin tanning compositions and methods for their preparation and use
US5514369A (en) 1993-05-21 1996-05-07 Henkel Corporation Mild shampoo composition
JPH08119831A (en) 1994-08-29 1996-05-14 Osaka Ship Building Co Ltd Foaming aerosol composition
US5523078A (en) 1995-02-03 1996-06-04 Michael E. Baylin Method of preparing and composition for treatment of hair and scalp
US5527534A (en) 1992-10-21 1996-06-18 Gynetech Laboratories, Ltd. Vaginal sponge delivery system
US5527822A (en) 1993-12-29 1996-06-18 Forest Laboratories, Inc. Method of treatment of traumatic brain injury
US5529770A (en) 1994-12-09 1996-06-25 West Agro, Inc. Viscous liquid conditioning topical germicides
JPH08165218A (en) 1994-12-09 1996-06-25 Taiyo Kagaku Co Ltd Cosmetic material
US5531703A (en) 1992-04-28 1996-07-02 Schering-Plough Healthcare Products, Inc. Applicator for semisolid medications
WO1996019921A1 (en) 1994-12-23 1996-07-04 Commonwealth Scientific And Industrial Research Organisation Iodine biocidal material
US5534261A (en) 1995-01-17 1996-07-09 University Of Southern California Retinoid-based compositions and method for preventing adhesion formation using the same
US5536743A (en) 1988-01-15 1996-07-16 Curatek Pharmaceuticals Limited Partnership Intravaginal treatment of vaginal infections with buffered metronidazole compositions
US5540853A (en) 1994-10-20 1996-07-30 The Procter & Gamble Company Personal treatment compositions and/or cosmetic compositions containing enduring perfume
US5545401A (en) 1994-06-02 1996-08-13 Shanbrom; Edward Antiviral, spermicidal vaginal gel and foam containing low molecular weight povidone-iodine
WO1996024325A1 (en) 1995-02-06 1996-08-15 R.P. Scherer Corporation Improved topical application emulsions
US5547989A (en) 1994-08-19 1996-08-20 Schering-Plough Healthcare Products, Inc. Compositions for treating corns and calluses
WO1996026711A1 (en) 1995-02-27 1996-09-06 L'oreal Nitric oxide synthase inhibitors
WO1996027376A1 (en) 1995-03-03 1996-09-12 Medeva Plc Corticosteroid-containing pharmaceutical composition
US5558872A (en) 1995-03-07 1996-09-24 Healthpoint Medical Limited Partnership Gelled mineral oil skin protectant
US5560859A (en) 1989-07-26 1996-10-01 Pfizer Inc. Post foaming gel shaving composition
JPH08277209A (en) 1995-04-07 1996-10-22 Taisho Pharmaceut Co Ltd Revitalizing hair tonic
US5567420A (en) 1994-11-16 1996-10-22 Mceleney; John Lotion which is temporarily colored upon application
EP0535327B1 (en) 1991-10-01 1996-10-23 American Cyanamid Company Pharmaceutical composition containing felbinac
EP0738516A1 (en) 1994-11-08 1996-10-23 Mochida Pharmaceutical Co., Ltd. External preparation for skin protection
US5576016A (en) 1993-05-18 1996-11-19 Pharmos Corporation Solid fat nanoemulsions as drug delivery vehicles
US5578315A (en) 1993-12-01 1996-11-26 Rutgers, The State University Of New Jersey Mucosal adhesive device for long-acting delivery of pharmaceutical combinations in oral cavity
WO1996039119A1 (en) 1995-06-06 1996-12-12 Neutrogena Corporation Topical vehicles containing solubilized and stabilized azelaic acid
US5585104A (en) 1995-04-12 1996-12-17 The Procter & Gamble Company Cleansing emulsions
US5589515A (en) 1991-09-27 1996-12-31 Nof Corporation Cosmetic composition and an emulsion composition
US5589157A (en) 1992-09-29 1996-12-31 Amerchol Corporation Hairsprays and acrylic polymer compositions for use therein
FR2736824A1 (en) 1995-07-18 1997-01-24 Fabre Pierre Dermo Cosmetique MINOXIDIL HAIR COMPOSITION WITH LOW FAT SOLVENT CONTENT
US5597560A (en) 1994-05-17 1997-01-28 Laboratorios Cusi, S.A. Diclofenac and tobramycin formulations for ophthalmic and otic topicaluse
EP0757959A1 (en) 1995-08-08 1997-02-12 Wella Aktiengesellschaft Pressurized gas container for dispensing foam
US5603940A (en) 1993-10-08 1997-02-18 L'oreal Oil-in-water emulsion which may be used for obtaining a cream
US5605679A (en) 1994-06-03 1997-02-25 L'oreal Photoprotective/cosmetic compositions comprising at least one solid organic sunscreen compound and diphenylacrylate solvent therefor
US5608119A (en) 1993-09-16 1997-03-04 Takasago International Corporation (2S)-3-[(1R, 2S, 5R)-[5-methyl-2-(1-methylethyl)-cyclohexyl]oxy]-1, 2-propanediol, process for producing the same, and compositions containing the same
US5611463A (en) 1994-07-12 1997-03-18 Lir France, S.A. Double dispenser for fluid products
US5612056A (en) 1991-08-21 1997-03-18 The Secretary Of State For Defence In Her Britannic Majesty's Government Of The United Kingdom Of Gt. Britain & Northern Ireland Transdermal formulations
US5613623A (en) 1994-08-09 1997-03-25 Wella Aktiengesellschaft Two-chamber container
US5614171A (en) 1991-03-06 1997-03-25 Domp e Farmaceutici SpA Hydrophilic pharmaceutical composition containing ketoprofen lysine salt for topical use
US5613583A (en) 1994-07-20 1997-03-25 Toyota Jidosha Kabushiki Kaisha Slip control apparatus for motor vehicle lock-up clutch
US5614178A (en) 1992-07-28 1997-03-25 The Procter & Gamble Company Compositions for topical delivery of drugs comprising a mixture of high and low HLB surfactants and alkoxylated ether
JPH0984855A (en) 1995-09-25 1997-03-31 Kyoto Yakuhin Kogyo Kk Aerosol preparation for administer medicine to rectum or vagina
JPH0999553A (en) 1995-10-09 1997-04-15 Fujitsu Ltd Ink jet head
JPH09110636A (en) 1995-10-16 1997-04-28 Kanebo Ltd Foam cosmetic for skin or hair
US5635469A (en) 1993-06-10 1997-06-03 The Procter & Gamble Company Foaming cleansing products
US5641480A (en) 1994-12-08 1997-06-24 Lever Brothers Company, Division Of Conopco, Inc. Hair care compositions comprising heteroatom containing alkyl aldonamide compounds
US5643600A (en) 1991-09-17 1997-07-01 Micro-Pak, Inc. Lipid vesicles containing avocado oil unsaponifiables
US5645842A (en) 1992-10-31 1997-07-08 Th. Goldschmidt Ag. Cosmetic or pharmaceutical preparations
US5648380A (en) 1991-03-01 1997-07-15 Warner-Lambert Company Anti-inflammatory wound healing compositions and methods for preparing and using same
US5650554A (en) 1991-02-22 1997-07-22 Sembiosys Genetics Inc. Oil-body proteins as carriers of high-value peptides in plants
US5658575A (en) 1993-09-07 1997-08-19 L'oreal Cosmetic or dermatological composition comprising an oil-in-water emulsion based on oily globules provided with a lamellar liquid crystal coating
US5658749A (en) 1994-04-05 1997-08-19 Corning Clinical Laboratories, Inc. Method for processing mycobacteria
US5658956A (en) 1991-03-01 1997-08-19 Warner-Lambert Company Bioadhesive-wound healing compositions and methods for preparing and using same
US5663208A (en) 1991-03-01 1997-09-02 Warner-Lambert Company Antifungal wound healing compositions and methods for preparing and using same
US5672634A (en) 1996-12-23 1997-09-30 Isp Investments Inc. Crosslinked PVP-I2 foam product
US5679324A (en) 1994-07-08 1997-10-21 The Procter & Gamble Co. Aerosol foamable fragrance composition
WO1997039745A1 (en) 1996-04-19 1997-10-30 Sloan-Kettering Institute For Cancer Research Use of inhaled retinoids in the prevention of cancer
US5683710A (en) 1994-09-14 1997-11-04 Nitto Denko Corporation Percutaneous absorption preparation
US5686088A (en) 1993-12-23 1997-11-11 The Procter & Gamble Company Antimicrobial wipe compositions
US5693258A (en) 1993-03-30 1997-12-02 Kao Corporation Method for improving foaming properties and foaming composition
US5695747A (en) 1991-06-14 1997-12-09 L'oreal Cosmetic composition containing a mixture of metal oxide nanopigments and melanine pigments
US5695551A (en) 1996-12-09 1997-12-09 Dow Corning Corporation Water repellent composition
US5705472A (en) 1995-07-18 1998-01-06 Petroferm Inc. Neutral aqueous cleaning composition
US5716621A (en) 1996-07-03 1998-02-10 Pharmadyn, Inc. Nonocclusive drug delivery device and process for its manufacture
US5716611A (en) 1996-01-02 1998-02-10 Euro-Celtique, S.A. Emollient antimicrobial formulations containing povidone iodine
US5719122A (en) 1992-10-20 1998-02-17 Smithkline Beecham Farmaceutici S.P.A. Pharmaceutical compositions containing a calcitonin
US5719197A (en) 1988-03-04 1998-02-17 Noven Pharmaceuticals, Inc. Compositions and methods for topical administration of pharmaceutically active agents
EP0824911A2 (en) 1996-08-20 1998-02-25 Bristol-Myers Squibb Company Non-tacky and quick-drying aqueous-based antiperspirant compositions
US5725872A (en) 1993-12-14 1998-03-10 Ferring Bv Composition for foams, notably rectal foams, and foams thus obtained
US5725874A (en) 1993-05-19 1998-03-10 Hisamitsu Pharmaceutical Co., Inc. Solubilizer and external preparations containing the same
EP0829259A1 (en) 1996-09-04 1998-03-18 Warner-Lambert Company Foam/gel with microbeads and/or fine particles
US5733572A (en) 1989-12-22 1998-03-31 Imarx Pharmaceutical Corp. Gas and gaseous precursor filled microspheres as topical and subcutaneous delivery vehicles
US5733558A (en) 1995-04-20 1998-03-31 L'oreal Method for treatment of acne and/or the effects of ageing using HMG-coenzyme A-reductase inhibitor and compositions for performing the same
WO1998017282A1 (en) 1996-10-23 1998-04-30 Vertex Pharmaceuticals Incorporated Methods of using sucrose octasulfate to treat or prevent enveloped virus infection
US5747049A (en) 1995-07-07 1998-05-05 Shiseido Company, Ltd. Cosmetic composition
JPH10114619A (en) 1996-10-14 1998-05-06 L'oreal Sa Self-foaming cream
WO1998018472A1 (en) 1996-10-31 1998-05-07 Recordati S.A. Chemical And Pharmaceutical Company Antiherpetic pharmaceutical compositions containing acyclovir for topical applicators
WO1998019654A1 (en) 1996-11-04 1998-05-14 The Procter & Gamble Company Hair mousse composition comprising silicone emulsion
US5753241A (en) 1995-02-27 1998-05-19 L'oreal Transparent nanoemulsion less than 100 NM based on fluid non-ionic amphiphilic lipids and use in cosmetic or in dermopharmaceuticals
US5753270A (en) 1987-09-16 1998-05-19 Patrick A. Beauchamp Topical treatment of diseased skin disorders
US5753245A (en) 1994-08-26 1998-05-19 The Procter & Gamble Company Personal cleansing compositions
WO1998021955A1 (en) 1996-11-21 1998-05-28 Colgate-Palmolive Company Foam cleaning compositions
US5759579A (en) 1996-12-05 1998-06-02 American Home Products Corporation Pharmaceutical suspension systems
WO1998023291A1 (en) 1996-11-22 1998-06-04 Soltec Research Pty. Ltd. Percutaneous delivery system
US5767104A (en) 1989-04-20 1998-06-16 Bar-Shalom; Daniel Use of sulfated saccharides to treat baldness
US5773410A (en) 1994-07-29 1998-06-30 Takasago International Corporation Method for purifying (-)-N-isopulegol and citrus perfume composition containing (-)-N-isopulegol obtained by the method
KR0143232B1 (en) 1988-10-04 1998-07-15 오오쯔까 아끼히꼬 Preparation for iron supply, preparation for vitamin supply and method for stabilizing a foam preparation
US5783202A (en) 1995-03-14 1998-07-21 Soltec Research Pty. Ltd. Pediculicidal mousse composition for killing head lice
WO1998031339A1 (en) 1997-01-17 1998-07-23 Ponsus Pharma Ab. Skin preparation
US5788664A (en) 1994-11-30 1998-08-04 Scalise; Gaspare Suppository applicator
US5792448A (en) 1994-05-05 1998-08-11 L'oreal Use of flavonoids for preserving and/or enhancing the mechanical properties of the hair and process for protecting the hair using these compounds
US5792922A (en) 1992-04-02 1998-08-11 Sembiosys Genetics Inc. Oil-body protein cis-elements as regulatory signals
US5797955A (en) 1996-06-11 1998-08-25 Walters; David J. Pressure application unit for positioning vertebra
WO1998036733A2 (en) 1997-02-24 1998-08-27 Michael Albert Kamm Topical pharmaceutical composition comprising a cholinergic agent or a calcium channel blocker
US5804546A (en) 1995-05-27 1998-09-08 Cussons (International) Limited Cleaning composition
US5807571A (en) 1993-05-06 1998-09-15 Lts Lohmann Therapie-Systeme Gmbh Transdermal therapeutic systems for administering indole serotonin agonists
US5817322A (en) 1995-09-14 1998-10-06 Xu; Rongxiang Pharmaceutical base and the use of the same
EP0676198B1 (en) 1994-04-05 1998-10-07 Agis Industries (1983) Ltd Fungicidal compositions containing a combination of bifonazole and fluocinonide
US5824650A (en) 1994-12-19 1998-10-20 L'oreal Topical composition containing a substance P antagoinst
US5833961A (en) 1996-06-25 1998-11-10 Inolex Investment Corporation Polyester-based suncreen formulations
US5833960A (en) 1996-08-02 1998-11-10 Beiersdorf Ag Foaming light protection preparations containing water-soluble light protection filters and surface-active substances
US5837270A (en) 1996-08-26 1998-11-17 Burgess; Nelson Leon Topical anti-acne composition
US5840771A (en) 1993-10-01 1998-11-24 Legere Pharmaceuticals, Ltd. Prophylaxis against diseases tramsmittable by sexual contact, and therapy of such diseases
WO1998052536A1 (en) 1997-05-23 1998-11-26 The Procter & Gamble Company Skin care compositions
US5843411A (en) 1997-02-06 1998-12-01 Topix Pharmaceuticals Inc. Stabilization of ascorbic acid, ascorbic acid derivatives and/or extracts containing ascorbic acid for topical use
US5846983A (en) 1996-02-09 1998-12-08 Mayo Foundation For Medical Education And Research Colonic delivery of nicotine to treat inflammatory bowel disease
US5849042A (en) 1997-11-19 1998-12-15 Bristol-Myers Squibb Hair dye compositions containing 2,3 dialkyl-4-aminophenol and a 2-alkyl-1-naphthol
JPH10332456A (en) 1997-06-04 1998-12-18 Toyo Gas Meter Kk Attaching tool of transmission device for gas meter
US5854246A (en) 1994-09-01 1998-12-29 Janssen Pharmaceutica, N.V. Topical ketoconazole emulsions
US5856452A (en) 1996-12-16 1999-01-05 Sembiosys Genetics Inc. Oil bodies and associated proteins as affinity matrices
US5858371A (en) 1997-02-05 1999-01-12 Panacea Biotech Limited Pharmaceutical composition for the control and treatment of anorectal and colonic diseases
US5865347A (en) 1997-10-27 1999-02-02 William T. Wilkinson Multi-chamber dispenser for flowable materials
US5866040A (en) 1990-06-15 1999-02-02 Shiseido Company, Ltd. Complex and emulsified composition
US5869529A (en) 1994-07-20 1999-02-09 Agis Industries (1983) Ltd. Topical preparation for the prevention and treatment of lesions and sores associated with a herpes virus
US5871720A (en) 1997-11-20 1999-02-16 Colgate-Palmolive Company Cosmetic compositions with DBS and functionalized silicones
WO1999008649A2 (en) 1997-08-18 1999-02-25 Neubourg, Stephanie Foaming skin cream
US5877216A (en) 1997-10-28 1999-03-02 Vivus, Incorporated Treatment of female sexual dysfunction
US5879469A (en) 1997-01-06 1999-03-09 Deeay Technologies Ltd. Dishwashing method and detergent composition therefor
US5881493A (en) 1995-09-14 1999-03-16 D. B. Smith & Co. Inc. Methods for applying foam
US5885581A (en) 1997-09-11 1999-03-23 Merz, Incorporated Composition and method for improvement of the appearance of scars
US5889028A (en) 1996-02-09 1999-03-30 Mayo Foundation For Medical Education And Research Colonic delivery of nicotine to treat inflammatory bowel disease
US5889054A (en) 1986-12-23 1999-03-30 Tristrata Technology, Inc. Method of using beta hydroxy acids for treating wrinkles
US5891458A (en) 1992-09-10 1999-04-06 Britton; Peter Bioerodible device for administering active ingredients
WO1999020250A1 (en) 1997-10-17 1999-04-29 Soltec Research Pty. Ltd. Topical antifungal composition
US5902574A (en) 1994-05-23 1999-05-11 The Gillette Company Shaving preparation for improved shaving comfort
US5902789A (en) 1986-04-23 1999-05-11 Fisons Corporation Nasal administration of drugs
US5905092A (en) 1994-09-27 1999-05-18 Virotex Corporation Reel/Frame Topical antibiotic composition providing optimal moisture environment for rapid wound healing that reduces skin contraction
US5910382A (en) 1996-04-23 1999-06-08 Board Of Regents, University Of Texas Systems Cathode materials for secondary (rechargeable) lithium batteries
US5911981A (en) 1997-10-24 1999-06-15 R.I.T.A. Corporation Surfactant blends for generating a stable wet foam
US5912007A (en) 1996-02-29 1999-06-15 Warner-Lambert Company Delivery system for the localized administration of medicaments to the upper respiratory tract and methods for preparing and using same
US5914310A (en) 1994-08-19 1999-06-22 Rhodia Inc. Amphoteric surfactants having multiple hydrophobic and hydrophilic groups
US5914122A (en) 1994-12-27 1999-06-22 Dr. Falk Pharma Gmbh Stable budesonide solutions, method of preparing them and use of these solutions as enema preparations and pharmaceutical foams
US5919830A (en) 1998-04-30 1999-07-06 Gopalkrishnan; Sridhar Stable non-aqueous blends for personal care compositions
US5922331A (en) 1997-03-26 1999-07-13 Chanel, Inc. Skin cream composition
US5925669A (en) 1994-03-22 1999-07-20 Molecular/Structural Bio Technologies, Inc. Carrier compositions for anti-neoplastic drugs
WO1999037282A2 (en) 1998-01-22 1999-07-29 Beiersdorf Ag Reduced lipid flowable cosmetic or dermatological preparations
FR2774595A1 (en) 1998-02-06 1999-08-13 Rech D Innovation Et De Dev Ce EMULSION FOR TRANSDERMAL STEROID ADMINISTRATION
US5939376A (en) 1997-09-25 1999-08-17 Colgate Palmolive Company Liquid cleaning compositions containing an organic ester foam control agent
US5948682A (en) 1991-02-22 1999-09-07 Sembiosys Genetics Inc. Preparation of heterologous proteins on oil bodies
US5951544A (en) 1996-12-04 1999-09-14 Laser Industries Ltd. Handpiece assembly for laser apparatus
US5952392A (en) 1996-09-17 1999-09-14 Avanir Pharmaceuticals Long-chain alcohols, alkanes, fatty acids and amides in the treatment of burns and viral inhibition
US5951989A (en) 1997-04-07 1999-09-14 Heymann; Warren R. Method for the treatment of dry skin
US5952373A (en) 1994-12-13 1999-09-14 Beiersdorf Ag Agents acting against hyperreactive and hypoactive, deficient skin conditions and manifest dermatitides
US5951993A (en) 1995-06-22 1999-09-14 Minnesota Mining And Manufacturing Company Stable hydroalcoholic compositions
JPH11250543A (en) 1998-02-27 1999-09-17 Teac Corp Record medium recording/reproducing device
US5955414A (en) 1994-10-05 1999-09-21 S. C. Johnson & Son, Inc. Cleaning foam having fluorinated stain repellent and low flammability
US5959161A (en) 1997-10-28 1999-09-28 Takasago International Corporation Method for producing para-menthane-3,8-diol
US5961998A (en) 1997-07-08 1999-10-05 L'oreal Glossy composition containing aromatic oils thickened by a polysaccharide ether
US5961957A (en) 1997-10-20 1999-10-05 Mcanalley; Bill H. Foam compositions
WO1999053923A1 (en) 1998-04-22 1999-10-28 Soltec Research Pty. Ltd. Pharmaceutical composition
US5976555A (en) 1994-09-07 1999-11-02 Johnson & Johnson Consumer Products, Inc. Topical oil-in-water emulsions containing retinoids
US5980904A (en) 1998-11-18 1999-11-09 Amway Corporation Skin whitening composition containing bearberry extract and a reducing agent
US5990100A (en) 1998-03-24 1999-11-23 Panda Pharmaceuticals, L.L.C. Composition and method for treatment of psoriasis
GB2337461A (en) 1998-05-22 1999-11-24 Hewlett Healthcare Limited Formulations for topicval administration
US5993846A (en) 1993-08-13 1999-11-30 Pharmos Corporation Bioadhesive emulsion preparations for enhanced drug delivery
US6001341A (en) 1996-05-21 1999-12-14 Condea Augusta S.P.A. Deodorant and/or antiperspirant cosmetic compositions
US6006948A (en) 1997-11-17 1999-12-28 Raimund Andris Gmbh & Co. Kg Two-chamber metering dispenser
JP2000017174A (en) 1998-03-03 2000-01-18 General Electric Co <Ge> Emulsion of silicone and non-aqueous hydroxyl solvent
US6017912A (en) 1998-02-27 2000-01-25 Bussell; Letantia Topical fluoroquinolone antibiotics in an alcohol and acetone vehicle
US6019967A (en) 1995-01-26 2000-02-01 Societe L'oreal S.A. Therapeutic/cosmetic compositions comprising CGRP antagonists for treating sensitive human skin
US6024942A (en) 1996-02-09 2000-02-15 The Procter & Gamble Company Photoprotective compositions
EP0979654A1 (en) 1998-03-04 2000-02-16 Teijin Limited Activated vitamin d 3? emulsion-type lotions
WO2000009082A1 (en) 1998-08-14 2000-02-24 Unilever Plc Cosmetic composition
US6030630A (en) 1995-12-29 2000-02-29 Rhodia Chimie Cosmetic compositions for the hair or skin based on sulfone copolyesters with polyorganosiloxane units
US6039936A (en) 1996-11-15 2000-03-21 L'oreal Nanoemulsion based on non-ionic and cationic amphiphilic lipids and uses thereof
JP2000080017A (en) 1998-09-02 2000-03-21 Kanebo Ltd Aerosol composition
WO2000015193A1 (en) 1998-09-11 2000-03-23 Soltec Research Pty Ltd Mousse composition
US6042848A (en) 1996-08-15 2000-03-28 The Board Of Trustees Of Southern Illinois University Enhancement of antimicrobial peptide activity by metal ions
US6045779A (en) 1994-02-18 2000-04-04 Henkel Kommanditgesellschaft Auf Aktien Skin and hair aerosol foam preparations containing an alkyl polyglycoside and vegetable oil
EP0993827A1 (en) 1997-06-13 2000-04-19 Taisho Pharmaceutical Co., Ltd Aerosols
WO2000023051A1 (en) 1998-10-19 2000-04-27 Oms Holdings, Llc Aerosol ointment compositions and method of manufacture
JP2000128734A (en) 1998-10-22 2000-05-09 Toyo Aerosol Ind Co Ltd Aerosol composition for forming foam
US6060041A (en) 1998-06-15 2000-05-09 L'oreal Photoprotective cosmetic compositions containing a metal oxide nanopigment and an acrylic terpolymer, and use of these compositions for protecting keratinous material against ultraviolet radiation
US6071536A (en) 1995-03-29 2000-06-06 Shionogi & Co., Ltd. Gelatin capsule having adjusted water activity
US6071541A (en) 1998-07-31 2000-06-06 Murad; Howard Pharmaceutical compositions and methods for managing skin conditions
US6075056A (en) 1997-10-03 2000-06-13 Penederm, Inc. Antifungal/steroid topical compositions
WO2000033825A2 (en) 1998-12-10 2000-06-15 Nexmed Holdings, Inc. Compositions and methods for amelioration of human female sexual dysfunction
US6080394A (en) 1999-11-08 2000-06-27 Dow Corning Corporation Polar solvent-in-oil emulsions and multiple emulsions
WO2000038731A1 (en) 1998-12-28 2000-07-06 Taisho Pharmaceutical Co.,Ltd. External preparation
JP2000191429A (en) 1998-12-28 2000-07-11 Kao Corp Foamable cosmetic
US6087317A (en) 1998-12-10 2000-07-11 Dow Corning Corporation Particle size stable silicone emulsions
US6087310A (en) 1998-09-23 2000-07-11 Castrol Limited Skin cleaning compositions and uses comprising a polymer latex emulsion
US6090772A (en) 1996-07-10 2000-07-18 Steris Inc Triclosan skin wash with enhanced efficacy
US6093408A (en) 1996-10-25 2000-07-25 The Procter & Gamble Company Skin care compositions
US6096756A (en) 1992-09-21 2000-08-01 Albert Einstein College Of Medicine Of Yeshiva University Method of simultaneously enhancing analgesic potency and attenuating dependence liability caused by morphine and other bimodally-acting opioid agonists
EP1025836A1 (en) 1999-02-08 2000-08-09 F. Hoffmann-La Roche Ag Cosmetic light screening composition
FR2789371A1 (en) 1999-02-05 2000-08-11 Sofab DISTRIBUTOR OF CHEMICALLY UNSTABLE PRODUCTS
US6110477A (en) 1998-10-30 2000-08-29 Topix Pharmaceuticals Inc. Stabilization of ascorbic acid, ascorbic acid derivatives and/or extracts containing ascorbic acid for topical use
US6110966A (en) 1998-02-20 2000-08-29 Medi-Cell Laboratories, Inc. Triple action complex
DE10009233A1 (en) 1999-02-26 2000-08-31 Wella Ag Pressurized gas container appliance used for application of foam products for hair treatment includes connecting channels and mixing chamber with small cross sectional area so that products flowing through them remain in fluid phase
JP2000239140A (en) 1999-02-17 2000-09-05 Yakult Honsha Co Ltd Preparation for external use for skin
US6113888A (en) 1999-06-15 2000-09-05 Neutrogena Corporation Self-tanning mousse
US6116466A (en) 1997-10-03 2000-09-12 L'oreal S.A. Two-product dispensing unit
US6121210A (en) 1998-03-12 2000-09-19 Dap Products Inc. Foamable silicone oil compositions and methods of use thereof
US6133327A (en) 1995-12-14 2000-10-17 Taisho Pharmaceutical Co., Ltd. Aerosol preparation
WO2000061076A1 (en) 1999-04-14 2000-10-19 Unilever Plc Foaming cosmetic products
WO2000062776A1 (en) 1999-04-16 2000-10-26 Fujisawa Pharmaceutical Co., Ltd. Antifungal compositions
US6146645A (en) 1997-05-27 2000-11-14 Sembiosys Genetics Inc. Uses of oil bodies
US6146664A (en) 1998-07-10 2000-11-14 Shaklee Corporation Stable topical ascorbic acid compositions
FR2793479A1 (en) 1999-05-10 2000-11-17 Lir France Sa Double dispenser for liquid or paste cosmetic products has casing containing two reservoirs each surmounted by dispensing pump with pushbuttons connected to mixing chamber discharging through single dispensing orifice
EP1055425A2 (en) 1999-05-27 2000-11-29 Bristol-Myers Squibb Company Ultra-mild, clear, aqueous, foamable skin cleanser
WO2000072805A1 (en) 1999-05-28 2000-12-07 Unilever Plc Foamable shower oil composition
US6162834A (en) 1995-04-25 2000-12-19 L'oreal Foaming oil-in-water emulsion based on nonionic surfactants, a fatty phase and a crosslinked cationic or anionic polymer, and its use in topical applications
JP2000351726A (en) 1999-06-08 2000-12-19 Lion Corp Aerosol preparation
WO2000076461A2 (en) 1999-06-15 2000-12-21 Unilever Plc Mousse-forming shampoo compositions
JP2000354623A (en) 1999-06-14 2000-12-26 Shiigeru Kk Deodorant and deodorizing spray
US6165455A (en) 1994-06-30 2000-12-26 The Procter & Gamble Company Personal care compositions containing thermoplastic elastomeric graft copolymers
US6168576B1 (en) 1999-05-24 2001-01-02 Irene N. Reynolds Device for dispensing vaginal medication
US6171347B1 (en) 1996-11-16 2001-01-09 Wella Aktiengesellschaft Compositions, methods and kits for reductively removing color from dyed hair
JP2001002526A (en) 1999-06-23 2001-01-09 Koike Kagaku Kk Foam aerosol composition
WO2001001949A1 (en) 1999-07-01 2001-01-11 Johnson And Johnson Consumer Companies, Inc. Cleansing compositions
KR20010003063A (en) 1999-06-21 2001-01-15 민경윤 Dermal emulsion composition comprising minoxidil
JP2001019606A (en) 1999-07-06 2001-01-23 Pola Chem Ind Inc Warmth sensory pack
WO2001005366A1 (en) 1999-07-15 2001-01-25 Playtex Products, Inc. Sunscreen aerosol composition
US6180669B1 (en) 1996-11-12 2001-01-30 Tamarkin Pharmaceutical Innovation Ltd. Method for treatment of dermatological disorders
US6183762B1 (en) 1997-05-27 2001-02-06 Sembiosys Genetics Inc. Oil body based personal care products
WO2001008681A1 (en) 1999-08-02 2001-02-08 First Horizon Pharmaceutical Corporation Methods of administration of glycopyrrolate compositions
US6187290B1 (en) 1994-12-06 2001-02-13 Giltech Limited Physiologically acceptable foamable formulation and foam
US6186367B1 (en) 1999-10-19 2001-02-13 Valley Design Inc. Metered liquid squeeze dispenser
WO2001010961A1 (en) 1999-08-04 2001-02-15 Napier International Technologies Inc. Aerosol formulations
US6190365B1 (en) 1999-06-21 2001-02-20 Chun Lim Abbott Vaginal douche applicator and method of vaginal deodorization using the same
US6189810B1 (en) 1998-10-07 2001-02-20 Sergei Alexeevich Nerushai Method for aerosol spraying liquid perfume products
US6204285B1 (en) 1996-07-01 2001-03-20 Sepracor Inc. Methods and compositions for treating urinary incontinence using enantiomerically enriched (R,R)-glycopyrrolate
JP2001072963A (en) 1999-09-03 2001-03-21 Daizo:Kk Water-in-oil type bubblelike aerosol composition and preparation thereof
US6214788B1 (en) 1999-03-31 2001-04-10 Firmenich Sa Use of cubebol as a flavoring ingredient
US6217887B1 (en) 1997-06-04 2001-04-17 The Procter & Gamble Company Leave-on antimicrobial compositions which provide improved immediate germ reduction
US6221823B1 (en) 1995-10-25 2001-04-24 Reckitt Benckiser Inc. Germicidal, acidic hard surface cleaning compositions
US6221381B1 (en) 1994-06-28 2001-04-24 The University Of British Columbia Enhancing milk production by adding to feed a nonionic surfactant coated on a carrier
US6224888B1 (en) 1999-02-12 2001-05-01 The Procter & Gamble Company Cosmetic compositions
US6232315B1 (en) 1998-09-28 2001-05-15 Merck & Co., Inc. Method for treating inflammatory diseases by administering a thrombin inhibitor
US6231837B1 (en) 1997-06-06 2001-05-15 Schering-Plough Healthcare Products, Inc. Self-tanning dihydroxyacetone formulations having improved stability and providing enhanced delivery
US6241971B1 (en) 1997-09-25 2001-06-05 The Procter & Gamble Company Hair styling compositions comprising mineral salt, lipophilic material, and low levels of surfactant
US6251369B1 (en) 1996-03-05 2001-06-26 Sultan Dental Products Dental fluoride foam
EP0506197B2 (en) 1991-03-25 2001-07-04 Yamanouchi Europe B.V. Topical preparation containing a suspension of solid lipid particles
US20010006654A1 (en) 1998-12-09 2001-07-05 L'oreal Compositions and methods for treating hair and skin using aqueous delivery systems
US6258374B1 (en) 1997-09-08 2001-07-10 Astra Aktiebolag Foam-forming pharmaceutical composition
US6261544B1 (en) 1995-03-09 2001-07-17 Focal, Inc. Poly(hydroxy acid)/polymer conjugates for skin applications
WO2001054212A1 (en) 2000-01-18 2001-07-26 Valence Technology, Inc. Lithium-based electrochemically active materials and preparation thereof
WO2001053198A1 (en) 2000-01-18 2001-07-26 Valence Technology, Inc. Preparation of lithium-containing materials
WO2001054679A2 (en) 2000-01-27 2001-08-02 Children's Hospital Research Foundation Transdermal composition containing an anesthetic and a vasodilator agent
US6270781B1 (en) 1999-01-08 2001-08-07 Maxim Pharmaceuticals, Inc. Method and compositions for topical treatment of damaged tissue using reactive oxygen metabolite production or release inhibitors
US6274150B1 (en) 1998-12-23 2001-08-14 L'oreal Nanoemulsion based on phosphoric acid fatty acid esters and its uses in the cosmetics, dermatological, pharmaceutical, and/or ophthalmological fields
WO2001062209A2 (en) 2000-02-25 2001-08-30 Henkel Kommanditgesellschaft Auf Aktien Dental cleaning agents containing propellant gas
US6284802B1 (en) 1999-04-19 2001-09-04 The Procter & Gamble Company Methods for regulating the condition of mammalian keratinous tissue
US6283336B1 (en) 1999-09-20 2001-09-04 The Procter & Gamble Company Article for the delivery of foam products
US6287546B1 (en) 1998-10-09 2001-09-11 Colgate-Palmolive Company Shampoos with stabilizers
US6294550B1 (en) 1997-10-28 2001-09-25 Asivi, Llc Treatment of female sexual dysfunction
WO2001070242A2 (en) 2000-03-22 2001-09-27 Ben Gurion University Of The Negev Research And Development Authority Compositions containing molecular iodine
US20010027218A1 (en) 1998-12-16 2001-10-04 3M Innovative Properties Company Aqueous foaming compositions, foam compoitions, and preparation of foam compositions
US6299023B1 (en) 2000-08-24 2001-10-09 Miles Arnone Device for dispensing two substances in a user selectable ratio with replaceable cartridges
US6299032B1 (en) 2000-11-27 2001-10-09 George W. Hamilton Disposable actuator with cap opener for aerosol cans
US6299900B1 (en) 1996-02-19 2001-10-09 Monash University Dermal penetration enhancers and drug delivery systems involving same
US20010027981A1 (en) 2000-02-04 2001-10-11 Jean-Pierre Yquel Dispenser for selectively dispensing separately stored components
WO2001076579A1 (en) 2000-04-06 2001-10-18 Perricone Nicholas V Treatment of skin damage using olive oil polyphenols
US20010033838A1 (en) 1999-08-26 2001-10-25 Sean Farmer Use of emu oil and its various fractions as a carrier for antifungal, antibacterial, and antiviral medications & preperations
US6308863B1 (en) 1999-09-02 2001-10-30 Owens-Brockway Plastic Products Inc. Dual chamber package for pressurized products
US20010036450A1 (en) 2000-01-21 2001-11-01 Claude Verite Nanoemulsions comprising at least one amphiphilic lipid, at least one oil, and at least one poly ethylene glycol (PEG) ester, and uses thereof
WO2001082890A1 (en) 2000-05-04 2001-11-08 E-L Management Corporation Eutectic mixtures in cosmetic compositions
WO2001082880A2 (en) 2000-05-03 2001-11-08 Goodman David S Topical preparation for the treatment of hair loss
WO2001085102A2 (en) 2000-05-05 2001-11-15 R.P. Scherer Technologies, Inc. Oil-in-water emulsion formulation containing hydroquinone and retinol
WO2001085128A2 (en) 2000-05-08 2001-11-15 Pfizer Products Inc. Skin protectant spray compositions
US6319913B1 (en) 1997-11-10 2001-11-20 Cellegy Pharmaceuticals, Inc. Penetration enhancing and irritation reducing systems
US6328982B1 (en) 1998-08-04 2001-12-11 Takasago International Corporation Cool feeling composition
US6328950B1 (en) 1998-11-28 2001-12-11 Wella Aktiengesellschaft Pigment-containing foamable gel and device producing a foam from said gel
WO2001095728A1 (en) 2000-06-13 2001-12-20 Fd Management, Inc. Cosmetic composition for stressed skin under extreme conditions
US6333362B1 (en) 1996-03-07 2001-12-25 L'oreal Pressurized device comprising an ultrafine foaming oil-in-water emulsion and use of this emulsion in cleansing and care of skin
US20010054574A1 (en) 1997-03-11 2001-12-27 Roger Navarro Coal tar extract with a reduced content of hydrocarbons and dermatological and cosmetic compositions containing the same
US6335022B1 (en) 1998-12-17 2002-01-01 L'oreal Nanoemulsion based on oxyethylenated or non-oxyethylenated sorbitan fatty esters, and its uses in the cosmetics, dermatological and/or ophthalmological fields
WO2002000820A1 (en) 2000-06-23 2002-01-03 Combe International Ltd. Stable foam for use in disposable wipe
US20020004063A1 (en) 1999-09-28 2002-01-10 Jie Zhang Methods and apparatus for drug delivery involving phase changing formulations
JP2002012513A (en) 2000-04-24 2002-01-15 Kanebo Ltd Urea-containing whipped cosmetic
US6341717B2 (en) 2000-04-01 2002-01-29 Megaplast Gmbh & Co. Kg Metering pump dispenser with at least two metering pumps
WO2002007685A2 (en) 2000-07-26 2002-01-31 The Procter & Gamble Company Method of regulating hair growth using metal complexes of oxidized carbohydrates
US20020013481A1 (en) 1998-02-24 2002-01-31 Uwe Schonrock Use of flavones flavanones and flavonoids for protecting ascorbic acid and/or ascorbyl compounds from oxidation
US6344218B1 (en) 1998-11-23 2002-02-05 The Procter & Gamble Company Skin deodorizing and santizing compositions
US20020015721A1 (en) 1999-01-05 2002-02-07 Jean-Thierry Simonnet Nanoemulsion based on ethylene oxide and propylene oxide block copolymers and its uses in the cosmetics, dermatological and/or ophthalmological fields
JP2002047136A (en) 2000-08-02 2002-02-12 Pola Chem Ind Inc Exothermic foam cosmetic
US6348229B1 (en) 2000-01-10 2002-02-19 Thixo Ltd. Food comprising thixotropic composition of unsaturated fat and process for manufacture thereof
WO2002015873A2 (en) 2000-08-22 2002-02-28 The Procter & Gamble Company Personal care compositions containing adhesive elastomeric polymer and inorganic colloid
WO2002015860A1 (en) 2000-08-24 2002-02-28 Tim Ioannides Topical antioxidant having vitamin c and method of combination with topical agent by user
US6352727B1 (en) 1998-03-12 2002-03-05 Oji Paper Co., Ltd. Bactericides
US6355230B2 (en) 2000-02-25 2002-03-12 Beiersdorf Ag Cosmetic and dermatological light protection formulations with a content of benzotriazole derivatives and alkyl naphthalates
US20020031478A1 (en) 2000-07-08 2002-03-14 Walter Keller Clear, two-phase, foam-forming aerosol hair care procuct
US20020032171A1 (en) 1999-06-30 2002-03-14 Feng-Jing Chen Clear oil-containing pharmaceutical compositions containing a therapeutic agent
US6358924B1 (en) 1997-12-05 2002-03-19 Eli Lilly And Company GLP-1 formulations
US20020035182A1 (en) 2000-07-13 2002-03-21 L'oreal Nanoemulsion containing nonionic polymers, and its uses
US20020035046A1 (en) 1999-07-01 2002-03-21 Lukenbach Elvin R. Personal care compositions
US20020035087A1 (en) 2000-07-06 2002-03-21 Barclay Barry J. B complex vitamin compositions that protect against cellular damage caused by ultraviolet light
WO2002024161A1 (en) 2000-09-21 2002-03-28 Taisho Pharmaceutical Co., Ltd. Suppositories sustained in the lower rectum
US6364854B1 (en) 1997-02-07 2002-04-02 J. Uriach & Cia. S. A. Applicator for semi-solid medications
US20020039591A1 (en) 1999-10-01 2002-04-04 Joseph Scott Dahle Topical applications for skin treatment
WO2002028435A1 (en) 2000-10-02 2002-04-11 Soltec Research Pty Ltd. Pharmaceutical vehicle
FR2814959A1 (en) 2000-10-09 2002-04-12 Menarini France Atomiser for pharmaceutical products based on antiinflammatory agents comprises pressurized container, dosing pouch and metering valve
US6372234B1 (en) 1997-05-27 2002-04-16 Sembiosys Genetics Inc. Products for topical applications comprising oil bodies
GB2367809A (en) 2000-10-12 2002-04-17 Bespak Plc Metering valve with collapsible chamber
US20020045659A1 (en) 2000-07-28 2002-04-18 Michelet Jean Francois Use, in cosmetic preparations, of prostaglandin EP-3 receptor agonists to attenuate, reduce or stop the growth of head hair and other hairs
US20020044659A1 (en) 2000-05-15 2002-04-18 Nec Corporation Broadcast verification system, broadcast verification method, broadcast verification apparatus and storage medium storing broadcast verification program
US6375960B1 (en) 1998-12-29 2002-04-23 L'oreal Nanoemulsion based on ethoxylated fatty ethers or on ethoxylated fatty esters and its uses in the cosmetics, dermatological and/or ophthalmological fields
US6375936B1 (en) 1998-07-09 2002-04-23 L'oreal Photoprotective cosmetic composition containing an anionic surfactant, compounds for screening out ultraviolet radiation and a cationic or zwitterionic amphiphilic compound, and use thereof
US20020048798A1 (en) 2000-03-15 2002-04-25 Avery Mitchell Allen Novel antioxidants
US6383471B1 (en) 1999-04-06 2002-05-07 Lipocine, Inc. Compositions and methods for improved delivery of ionizable hydrophobic therapeutic agents
US20020058010A1 (en) 2000-08-31 2002-05-16 L'oreal Foaming cosmetic cream for treating greasy skin and methods for using the same
US6395258B1 (en) 1999-04-27 2002-05-28 Unilever Home & Personal Care Usa A Division Of Conopco, Inc. Mousse forming hair treatment composition containing n-methyl alkyl glucamide surfactant
US6395300B1 (en) 1999-05-27 2002-05-28 Acusphere, Inc. Porous drug matrices and methods of manufacture thereof
WO2002041847A1 (en) 2000-11-24 2002-05-30 Wella Aktiengesellschaft Cosmetic or dermatological agent in the form of a creamy permanent mousse or a stable foamed cream
WO2002043490A1 (en) 2000-11-28 2002-06-06 Avon Products, Inc. Foaming insect repellent compositions
US6403069B1 (en) 2000-10-20 2002-06-11 Colgate-Palmolive Company High oil clear emulsion with elastomer
US6403061B1 (en) 1999-10-22 2002-06-11 Societe L'oreal UV-photoprotecting W/O emulsions comprising micronized insoluble screening agents & nonscreening oxyalkylenated silicones
US20020072544A1 (en) 2000-07-21 2002-06-13 Clariant Gmbh Fine emulsions
EP1215258A2 (en) 2000-12-12 2002-06-19 Takasago International Corporation Waming composition for food and drink or for oral care preparation
US20020090386A1 (en) 1998-05-04 2002-07-11 Haslwanter Joseph A. Skin barrier composition
US6423329B1 (en) 1999-02-12 2002-07-23 The Procter & Gamble Company Skin sanitizing compositions
US20020098215A1 (en) 2000-01-21 2002-07-25 Veronique Douin Nanoemulsions comprising at least one amphiphilic lipid, at least one oil, and at least one nonionic polymer, and uses thereof
US6428772B1 (en) 2001-06-25 2002-08-06 Blistex Inc. Acne treatment composition with cooling effect
US6433003B1 (en) 1999-04-23 2002-08-13 Arthur M. Bobrove Method for treating hyperhidrosis in mammals
US6433024B1 (en) 2000-05-08 2002-08-13 Karl F. Popp Topical anti-acne composition
US6433033B1 (en) 1999-02-10 2002-08-13 Mitsui Chemicals, Inc. High-durability flexible polyurethane cold cure molded foam and process for producing the same
US6433068B1 (en) 1997-03-07 2002-08-13 David S. Morrison Hydrocarbon gels as suspending and dispersing agents and products
WO2002062324A2 (en) 2001-02-05 2002-08-15 Michael Albert Kamm A treatment of oesophageal motility disorders and gastro-oesophageal reflux disease
US20020111281A1 (en) 2000-12-06 2002-08-15 Mohan Vishnupad Anhydrous creams, lotions and gels
US6437006B1 (en) 1999-09-27 2002-08-20 American Cyanamid Company Pharmaceutical carrier formulation
US6440429B1 (en) 1995-09-06 2002-08-27 Kao Corporation Emulsified, water-in-oil type composition and skin cosmetic preparation
US20020117516A1 (en) 2000-10-20 2002-08-29 L'oreal Dispenser unit for simultaneously dispensing the contents of two containers
US6447801B1 (en) 1997-02-11 2002-09-10 Bernard Salafsky Anti-parasitic action of N,N-diethyl-m-toluamide (deet) and formulations that prolong its activity in the skin
US6451777B1 (en) 1998-07-17 2002-09-17 The University Of Texas Southwestern Medical Center Method for regulating hair growth
US6455076B1 (en) 1994-12-21 2002-09-24 Gary S. Hahn Formulations and methods for reducing skin irritation
US20020136755A1 (en) 2000-12-22 2002-09-26 Tyrrell David John Absorbent articles with non-aqueous compositions containing botanicals
US20020134376A1 (en) 2001-03-26 2002-09-26 3M Innovative Properties Company Metering valve for a metered dose inhaler having improved flow
US20020143188A1 (en) 1999-05-12 2002-10-03 Garvey David S. Nitrosated and nitrosylated potassium channel activators, compositions and methods of use
WO2002078667A1 (en) 2001-03-29 2002-10-10 The Dial Corporation Antibacterial compositions for skin care
JP2002302419A (en) 2001-03-30 2002-10-18 Aldeep Cosmetics Japan Inc Cosmetic composition
US6468989B1 (en) 2000-07-13 2002-10-22 Dow Pharmaceutical Sciences Gel compositions containing metronidazole
US20020153390A1 (en) 2001-04-18 2002-10-24 Vlodek James A. Methods and apparatus for extruding foam through orifices
WO2002087519A2 (en) 2001-04-30 2002-11-07 The Gillette Company Shaving compositions containing highly lubricious water soluble polymers
US20020165170A1 (en) 2001-03-26 2002-11-07 Wilson S. Brian Method of attenuating reactions to skin irritants
US6479060B1 (en) 2001-09-04 2002-11-12 Healthpoint, Ltd. Elegant hydrogenated castor oil ointments
US6479058B1 (en) 1999-09-02 2002-11-12 Mccadden Michael E. Composition for the topical treatment of poison ivy and other forms of contact dermatitis
US6482810B1 (en) 1991-01-15 2002-11-19 Henry Brem Antibiotic composition for inhibition of angiogenesis
US6486168B1 (en) 1999-01-08 2002-11-26 3M Innovative Properties Company Formulations and methods for treatment of mucosal associated conditions with an immune response modifier
US6488947B1 (en) 2001-03-07 2002-12-03 The Procter & Gamble Company Topical composition comprising a functional aromatic derivative cosmetic bonding agent
US20020182162A1 (en) 2002-08-07 2002-12-05 Mohsen Shahinpoor Nitric oxide (NO) donor+cGMP-PDE5 inhibitor as a topical drug for enhanced hair growth
US20020182234A1 (en) 2000-12-19 2002-12-05 Beiersdorf Aktiengesellschaft Self-foaming or foam-like preparations
US20020187181A1 (en) 2001-05-14 2002-12-12 3M Innovative Properties Company System for delivering cosmetics and pharmaceuticals
US20020198136A1 (en) 2001-03-06 2002-12-26 Cellegy Pharmaceuticals, Inc. Compounds and methods for the treatment of urogenital disorders
WO2003000223A1 (en) 2001-06-20 2003-01-03 The Procter & Gamble Company Personal care composition comprising polyol-in-silicone emulsion
WO2003002082A1 (en) 2001-06-26 2003-01-09 The Procter & Gamble Company Pressurized anhydrous antiperspirant emulsions
US20030006193A1 (en) 1999-09-06 2003-01-09 Katsunori Ikeda Apparatus for purifying nucleic acids and proteins
JP2003012511A (en) 2001-06-27 2003-01-15 Rohto Pharmaceut Co Ltd Aerosol composition
US20030013692A1 (en) 2001-01-19 2003-01-16 Gullans Steven R. Methods of treating neurological disorders
US20030017181A1 (en) 2001-05-31 2003-01-23 Rood Gloria A. Dermatological compositions and methods
WO2003005985A1 (en) 2001-07-13 2003-01-23 The Procter & Gamble Company Mousse forming compositions comprising quaternary ammonium agents
US6511655B1 (en) 1999-08-16 2003-01-28 Beiersdorf Ag Cosmetic or dermatological preparations of the oil-in-water type
US6514487B1 (en) 2000-08-08 2003-02-04 Teresa Leigh Barr Foam and gel oat protein complex and method of use
US20030031693A1 (en) 1999-07-02 2003-02-13 Lionel Breton Hydroxystilbene/ascorbic acid compositions for treating skin afflictions
WO2003013984A1 (en) 2001-08-11 2003-02-20 Aventis Pharma Limited Pressurised aerosol dispenser
US6524594B1 (en) 1999-06-23 2003-02-25 Johnson & Johnson Consumer Companies, Inc. Foaming oil gel compositions
JP2003055146A (en) 2001-08-09 2003-02-26 Pola Chem Ind Inc Cosmetic for massage having cool down effect
DE10138495A1 (en) 2001-08-04 2003-02-27 Beiersdorf Ag Self-foaming cosmetic or dermatological composition comprises a fatty acid, an ethoxylated fatty acid, a fatty alcohol, lipids and an aliphatic hydrocarbon propellant
WO2003015699A2 (en) 2001-08-17 2003-02-27 Epicept Corporation Topical compositions and methods for treating pain
EP1287813A1 (en) 2001-08-28 2003-03-05 Coty Inc. Antiperspirant deodorant emulsion
US6531118B1 (en) 2001-12-11 2003-03-11 Avon Products, Inc. Topical compositions with a reversible photochromic ingredient
US6534455B1 (en) 1999-09-29 2003-03-18 L'oreal Composition for washing keratin materials, based on a detergent surfactant, a dialkyldiallylammonium homopolymer and an acrylic terpolymer
US6536629B2 (en) 1999-06-23 2003-03-25 Airspray N.V. Aerosol for dispensing a liquid
US6544562B2 (en) 2001-06-25 2003-04-08 Blistex Inc. Acne treatment including dual-package system
US6544530B1 (en) 1999-03-22 2003-04-08 J.P.M.E.D. Ltd. Stable oil-in-glycerin emulsion
US6548074B1 (en) 1999-07-22 2003-04-15 Elizabeth Arden Co., Division Of Conopco, Inc. Silicone elastomer emulsions stabilized with pentylene glycol
US6547063B1 (en) 2000-10-10 2003-04-15 The Procter & Gamble Company Article for the delivery of foam products
US6551604B1 (en) 1999-06-28 2003-04-22 The Procter & Gamble Company Skin care compositions
US20030077297A1 (en) 1999-02-26 2003-04-24 Feng-Jing Chen Pharmaceutical formulations and systems for improved absorption and multistage release of active agents
US20030078172A1 (en) 2001-09-20 2003-04-24 L'oreal Foaming cosmetic cream
US20030077301A1 (en) 1999-12-16 2003-04-24 Maibach Howard I. Topical pharmaceutical composition for the treatment of inflammatory dermatoses
US20030082120A1 (en) 2001-10-26 2003-05-01 Milstein Harold J. Method for reducing systemic effects of aging, effects of aging on the skin, and incidence of skin damage from sun exposure using antibiotics of the tetracycline family
EP1308169A1 (en) 2001-11-06 2003-05-07 Merz Pharma GmbH & Co.KGaA Reservoir composition for the topical application of sparingly soluble drugs, their production and use
US6562355B1 (en) 1999-10-08 2003-05-13 Societe L'oreal S.A. Comixture of dextran sulfate/escin for treating skin redness/edema and/or sensitive skin
US6566350B2 (en) 2000-05-23 2003-05-20 Showa Yakuhin Kako Co., Ltd. Minocycline-containing compositions
US20030108502A1 (en) 2001-10-30 2003-06-12 The Procter & Gamble Company Anhydrous cosmetic compositions containing polyols
FR2833246A1 (en) 2001-12-06 2003-06-13 Beatrice France Touteau Device for activating two aerosols simultaneously comprises sleeve into which two opposite aerosols, provided with simultaneous diffuser, are introduced, sleeve closed by filler cap with pushbutton
US20030114520A1 (en) 2001-08-09 2003-06-19 Croda, Inc. Anti-irritants
US6582679B2 (en) 2000-10-04 2003-06-24 Wella Ag Hair wax products containing waxes, non-volatile oils and volatile hydrophobic materials
WO2003051294A2 (en) 2001-12-18 2003-06-26 Medicis Pharmaceutical Corporation Mitocidal compositions and methods
US20030118515A1 (en) 2001-12-21 2003-06-26 Robert Jew Cosmetic composition containing carbon dioxide
US20030118527A1 (en) 2000-02-15 2003-06-26 Dija Zeist B.V. Tanning preparation for the skin
WO2003053292A1 (en) 2001-12-20 2003-07-03 Femmepharma, Inc. Vaginal delivery of drugs
WO2003055445A2 (en) 2001-12-21 2003-07-10 Medicis Pharmaceutical Corporation Compositions and methods for enhancing corticosteriod delivery
US20030129259A1 (en) 2001-12-28 2003-07-10 Avon Products, Inc. Topical lightening compostitions and methods of use
WO2003055454A1 (en) 2001-12-21 2003-07-10 Ponsus Pharma Ab New composition
US6599513B2 (en) 1997-05-27 2003-07-29 Sembiosys Genetics Inc. Products for topical applications comprising oil bodies
US20030148949A1 (en) 2001-10-05 2003-08-07 Podolsky Daniel K. Methods and compositions for treating dermal lesions
US6607716B1 (en) 1998-09-29 2003-08-19 Tech Labs, Inc. Pediculicidal compositions, a kit, and methods of use
WO2003070301A1 (en) 2002-02-20 2003-08-28 Abbott Research Group, Inc. Vaginal douches, vaginal douche applicators and methods of vaginal douching
WO2003071995A1 (en) 2002-02-21 2003-09-04 Besoyan Robert W Brief protector
CA2422244A1 (en) 2002-03-14 2003-09-14 Homax Products, Inc. Aerosol systems and methods for mixing and dispensing two-part materials
US6620773B1 (en) 1998-08-04 2003-09-16 Johnson & Johnson Gmbh Foaming oil preparation and its use
US20030175232A1 (en) 2001-11-13 2003-09-18 The Procter & Gamble Company Compositions containing enzymes stabilized with certain osmo-protectants and methods for using such compositions in personal care
WO2003075851A2 (en) 2002-03-06 2003-09-18 Cellegy Pharmaceuticals, Inc. Compositions and methods for the treatment of anorectal disorders
US20030175315A1 (en) 2002-01-05 2003-09-18 Yoo Byung Hee Nanoemulsion comprising metabolites of ginseng saponin as an active component and a method for preparing the same, and a skin-care composition for anti-aging containing the same
US20030180347A1 (en) 2002-03-19 2003-09-25 W.F. Young, Incorporated Patch for the delivery of topical agents
US20030185839A1 (en) 2001-10-05 2003-10-02 Podolsky Daniel K. Methods and compositions for treating dermal lesions
US20030194379A1 (en) 1993-08-27 2003-10-16 Francois Brugger Aerosol container and a method for storage and administration of a pre-determined amount of a pharmaceutically active aerosol
US20030195128A1 (en) 2002-01-31 2003-10-16 Deckman Douglas E. Lubricating oil compositions
US20030206955A1 (en) 2000-05-22 2003-11-06 L'oreal Nanoemulsions, compositions comprising such nanoemulsions, and methods of using such nanoemulsions
WO2003092641A1 (en) 2002-05-03 2003-11-13 Purepharm Inc. Topical glycopyrrolate product
US6649574B2 (en) 2001-10-10 2003-11-18 Exxonmobil Research And Engineering Company Biodegradable non-toxic gear oil
US6649571B1 (en) 2000-04-04 2003-11-18 Masi Technologies, L.L.C. Method of generating gas bubbles in oleaginous liquids
US20030215472A1 (en) 2002-05-16 2003-11-20 Bonda Craig A Methods and compositions employing a dialkyl amide
US20030215418A1 (en) 1997-01-09 2003-11-20 3M Innovative Properties Company Hydroalcoholic compositions thickened using polymers
WO2003094873A1 (en) 2002-05-10 2003-11-20 Unilever Plc Hair conditioning compositions
WO2003097002A1 (en) 2002-05-15 2003-11-27 The Procter & Gamble Company Underarm product in a metered-dose package
FR2840903A1 (en) 2002-06-13 2003-12-19 Oreal Glucose fatty acid esters active in preventing hair loss and aiding hair regrowth
US20030235597A1 (en) 2002-06-19 2003-12-25 Withiam Michael C. Cosmetic compositions comprising calcium silicates
US20040002550A1 (en) 2002-06-28 2004-01-01 Mercurio Anthony Fred Post foaming compositions
EP1375386A1 (en) 2002-05-28 2004-01-02 Mitani Valve Co Dispensing apparatus with metering chamber and aerosol type dispenser therewith
WO2004003284A1 (en) 2002-06-27 2004-01-08 Asahi Fiber Glass Company, Limited Collecting agent for glass fiber yarn and glass fiber yarn using the same
US6682750B2 (en) 2001-03-03 2004-01-27 Clariant Gmbh Surfactant-free cosmetic, dermatological and pharmaceutical compositions
US6682726B2 (en) 2001-04-30 2004-01-27 The Gillette Company Self-foaming shaving lotion
US20040018228A1 (en) 2000-11-06 2004-01-29 Afmedica, Inc. Compositions and methods for reducing scar tissue formation
JP2004047136A (en) 2002-07-08 2004-02-12 Furukawa Electric Co Ltd:The Assembly system of wire harness
FR2843373A1 (en) 2002-08-12 2004-02-13 Jean Augustin Container and applicator for for fluid product e.g. for hair care has inflatable chambers with movable spikes to pierce them
US6691898B2 (en) 2002-02-27 2004-02-17 Fomo Products, Inc. Push button foam dispensing device
US20040038912A1 (en) 2002-06-13 2004-02-26 Jean-Francois Michelet Derivative of glucose and of vitamin F, compositions comprising it, uses and preparation process
WO2004017962A2 (en) 2002-08-26 2004-03-04 S.L.A. Pharma Ag Tropical formulation comprising at least 5% of metronidazole in white petrolatum and its use in the anal and rectal region
US6706290B1 (en) 1998-07-06 2004-03-16 Olvai E. Kajander Methods for eradication of nanobacteria
US20040053797A1 (en) 2002-09-12 2004-03-18 Unilever Home & Personal Products Usa, Division Of Conopco, Inc. Viscoelastic cleansing gel with micellar surfactant solutions
US6709663B2 (en) 2001-08-31 2004-03-23 Healthpoint, Ltd. Multivesicular emulsion drug delivery systems
US20040058878A1 (en) 2002-01-18 2004-03-25 Walker Edward B. Antimicrobial and sporicidal composition
EP0504301B1 (en) 1989-12-07 2004-03-31 Instead, Inc. Method of collecting vaginal discharge
US20040063787A1 (en) 2002-09-19 2004-04-01 Villanueva Julie M. Vaginal health products
US20040067970A1 (en) 2002-09-18 2004-04-08 Unilever Home & Personal Care Usa, Division Of Conopco, Inc. Novel compounds and their uses
US20040072638A1 (en) 2002-09-27 2004-04-15 Enos Richard A. Quick-release fastener for releasably attaching lacrosse stick head to shaft
FR2845672A1 (en) 2002-10-09 2004-04-16 Airlessystems Fluid dispenser comprises two distinct dispensing units received and held in common external shell, each reservoir defining opening, dispensing part and fixing for dispensing part on opening
US6723309B1 (en) 2002-06-10 2004-04-20 Jeffrey Alan Deane Hair cleansing conditioner
US20040079361A1 (en) 2001-01-17 2004-04-29 Clayton Colin D. Medicinal aerosols
US20040078896A1 (en) 2002-04-12 2004-04-29 Dreamwell, Ltd. Cassette bedding system
WO2004037197A2 (en) 2002-10-24 2004-05-06 Goldstein Jay A Antifungal formulations
CA2502986A1 (en) 2002-10-25 2004-05-06 Foamix Ltd. Cosmetic and pharmaceutical foam
US6736860B2 (en) 2002-03-12 2004-05-18 Unilever Home & Personal Care Usa Division Of Conopco, Inc. Gradual permanent coloring of hair using dye intermediates dissolved in alkaline water with fatty alcohol
US20040105825A1 (en) 2001-11-30 2004-06-03 Clariant Gmbh Methods for producing foam from multiphase compositions
US20040106688A1 (en) 2002-09-30 2004-06-03 Kao Corporation Foamable oil-in-water type emulsion
UA66796C2 (en) 1999-12-27 2004-06-15 Univ Nat Pharmaceutical Composition "profesol foamy" for treating radiation lesions of skin
EP1428521A2 (en) 2002-12-13 2004-06-16 Unilever Plc Antiperspirant or deodorant composition
US6753167B2 (en) 1991-02-22 2004-06-22 Sembiosys Genetics Inc. Preparation of heterologous proteins on oil bodies
US6753013B1 (en) 1999-04-23 2004-06-22 Leo Pharmaceutical Products, Ltd. A/S Pharmaceutical composition
US20040120917A1 (en) 2002-12-18 2004-06-24 Coletica Cosmetic or dermopharmaceutical composition comprising an enzyme which is insoluble in an aqueous medium, as well as its uses
FR2848998A1 (en) 2002-12-20 2004-06-25 Oreal Dispenser for two fluid products in variable proportions has two containers with separate pumps, push-button with outlet valve and regulator
US20040127554A1 (en) 2001-05-17 2004-07-01 Carlo Ghisalberti Dermatological and cosmetic compositions
EP1438946A1 (en) 2001-10-26 2004-07-21 Taiyo Kagaku Co., Ltd. Composition for oily foamable aerosol
WO2004064769A2 (en) 2003-01-21 2004-08-05 Hector Herrera Methods for making and using topical delivery agents
US20040151756A1 (en) 2003-02-04 2004-08-05 Richards Anthony P. Edible low density high surface area drug vehicle, method of manufacturing low density high surface area drug vehicle
US20040151671A1 (en) 2003-01-24 2004-08-05 Connetics Australia Pty Ltd. Pharmaceutical foam
US6774114B2 (en) 2000-04-10 2004-08-10 L'oreal Topical application of immixture of ascorbic acid + ascorbic acid compounds for augmenting the synthesis of epidermal ceramides
US6777591B1 (en) 1999-08-27 2004-08-17 Sembiosys Genetics Inc. Legume-like storage protein promoter isolated from flax and methods of expressing proteins in plant seeds using the promoter
US20040161447A1 (en) 2000-02-17 2004-08-19 Leonard Paul Liquid foam producing compositions and dispensing system therefor
WO2004071479A1 (en) 2003-02-12 2004-08-26 Connetics Australia Pty Ltd Film foaming hydroalcoholic foam
EP1189579B1 (en) 2000-02-22 2004-09-08 Color Access, Inc. Gelled aqueous cosmetic compositions
JP2004250435A (en) 2002-11-21 2004-09-09 Dai Ichi Seiyaku Co Ltd Composition for hair growth
US6790435B1 (en) 1999-10-01 2004-09-14 Unilever Home & Personal Care Usa Division Of Conopco, Inc. Antiperspirant compositions comprising microemulsions
WO2004078158A2 (en) 2003-03-04 2004-09-16 The Procter & Gamble Company Regulation of mammalian keratinous tissue using hexamidine compositions
WO2004078896A1 (en) 2003-03-05 2004-09-16 Unilever Plc Method of treating a textile using a colour changing foam
US20040185123A1 (en) 2003-03-21 2004-09-23 Mazzio Elizabeth A. Topical treatment for dyshidrosis (pompholyx) and dry skin disorders
US6796973B1 (en) 1989-12-07 2004-09-28 Instead, Inc. Vaginal discharge collection device and intravaginal drug delivery system
US20040192754A1 (en) 2003-03-24 2004-09-30 Shapira Nathan Andrew Methods for treating idiopathic hyperhidrosis and associated conditions
US20040191196A1 (en) 2002-12-16 2004-09-30 Dov Tamarkin Novel conjugate compounds and dermatological compositions thereof
US20040195276A1 (en) 2003-04-03 2004-10-07 Karl-Heinz Fuchs Discharge device for at least one medium
US20040197295A1 (en) 2001-07-17 2004-10-07 Beiersdorf Ag Foamable preparations
US20040198706A1 (en) 2003-03-11 2004-10-07 Carrara Dario Norberto R. Methods and formulations for transdermal or transmucosal application of active agents
US6811767B1 (en) 1998-11-12 2004-11-02 Elan Pharma International Limited Liquid droplet aerosols of nanoparticulate drugs
US20040220187A1 (en) 2003-04-22 2004-11-04 Pharmacia Corporation Compositions of a cyclooxygenase-2 selective inhibitor and a sodium ion channel blocker for the treatment of pain, inflammation or inflammation mediated disorders
US20040219176A1 (en) 2001-08-08 2004-11-04 Dominguez Maria Antonia Garcia Injectables in foam. new pharmaceutical applications
WO2004093895A1 (en) 2003-04-22 2004-11-04 Pharmacia Corporation Compositions of a cyclooxygenase-2 selective inhibitor and a potassium ion channel modulator for the treatment of pain, inflammation or inflammation mediated disorders
EP1475381A1 (en) 2002-02-14 2004-11-10 Quimversion, S.L. Aluminium and hexamethylenetetramine complex and the applications thereof
US20040229813A1 (en) 2003-01-02 2004-11-18 Femme Pharma, Inc. Pharmaceutical preparations for treatments of diseases and disorders of the breast
US20040234475A1 (en) 2001-06-22 2004-11-25 Helene Lannibois-Drean Oil-in-oil emulsions comprising a silicone, dispersions and use of said emulsions
US20040241099A1 (en) 2003-05-28 2004-12-02 Popp Karl F. Foamable pharmaceutical compositions and methods for treating a disorder
JP2004348277A (en) 2003-05-20 2004-12-09 Seiko Epson Corp Printer maintenance system, print control server, client, method thereof, and program thereof
US20040247531A1 (en) 2001-09-27 2004-12-09 Beiersdorf Ag Self-foaming, foam-like, after-foaming or foamable cosmetic or dermatological preparations containing waxes or lipids that are solid or semi-solid at room temperature
US20040258643A1 (en) 2003-04-14 2004-12-23 Najem Yaqub Cleansing composition
US20040258628A1 (en) 2001-11-14 2004-12-23 Beiersdorf Ag Self-foaming, foam-type, post-foaming or foamable cosmetic or dermatological preparations containing siloxane elastomers
US20040258627A1 (en) 2001-11-09 2004-12-23 Beiersdorf Ag Self-foaming, foam-like, after-foaming or foamable cosmetic or dermatological preparation
US6834778B2 (en) 2001-06-27 2004-12-28 Kanebo, Limited Mixing and discharge device
WO2004112780A1 (en) 2003-06-18 2004-12-29 Galderma S.A. Metronidazole-based green tinted topical pharmaceutical composition
US20050002976A1 (en) 2003-06-19 2005-01-06 The Procter & Gamble Company Polyol-in-silicone emulsions
US6841547B2 (en) 2003-02-28 2005-01-11 Albert Einstein College Of Medicine Of Yeshevia University Method for decreasing low density lipoprotein
US6843390B1 (en) 2003-03-17 2005-01-18 Joe G. Bristor Multiple fluid closed system dispensing device
US20050013853A1 (en) 2000-11-29 2005-01-20 Irit Gil-Ad Anti-proliferative drugs
EP1500385A1 (en) 2002-03-28 2005-01-26 Hakuto Co., Ltd Method of foam stabilization for foam cosmetic
WO2005009416A1 (en) 2003-07-24 2005-02-03 Ranbaxy Laboratories Limited Modified release compositions for minocycline
WO2005011567A2 (en) 2003-08-04 2005-02-10 Foamix Ltd. Foam carrier containing amphiphilic copolymeric gelling agent
US20050042182A1 (en) 2003-08-13 2005-02-24 Moshe Arkin Topical compositions of urea
WO2005018530A2 (en) 2003-08-25 2005-03-03 Foamix Ltd. Penetrating pharmaceutical foam
US20050054991A1 (en) 2001-08-29 2005-03-10 Tobyn Michael John Topical administration device
GB2406330A (en) 2003-09-29 2005-03-30 Bespak Plc A dispensing apparatus having a metering chamber
US6875438B2 (en) 2002-04-27 2005-04-05 Aventis Pharma Deutschland Gmbh Preparations for topical administration of substances having antiandrogenic activity
US20050079228A1 (en) 2003-05-30 2005-04-14 Ashish Jaiswal Clear, stable topical compositions of clarithromycin and processes for their preparation
WO2005032522A1 (en) 2003-10-03 2005-04-14 Collegium Pharmaceutical, Inc. Topical aerosol foams
US20050079139A1 (en) 2003-10-11 2005-04-14 Jacques Elizabeth Joan Minoxidil pharmaceutical foam formulation
US6881271B2 (en) 2003-05-08 2005-04-19 Sanyo Electric Co., Ltd. Fixing member for evaporation apparatus
US20050085843A1 (en) 2003-10-21 2005-04-21 Nmt Medical, Inc. Quick release knot attachment system
US20050084551A1 (en) 2003-09-26 2005-04-21 Jensen Claude J. Morinda citrifolia-based oral care compositions and methods
FR2860976A1 (en) 2003-10-20 2005-04-22 Ravi Shrivastava Use of oral synergistic composition for treating e.g. cerebral or cardiac dysfunction, contains omega-3 fatty acids, at least two vitamins and at least two trace elements
US6890567B2 (en) 2000-02-04 2005-05-10 Takasago International Corporation Sensate composition imparting initial sensation upon contact
US20050101936A1 (en) 2003-11-06 2005-05-12 Pediamed Pharmaceuticals, Inc. Multi-site drug delivery platform
US20050100517A1 (en) 2003-11-06 2005-05-12 Unilever Home & Personal Care Usa, Division Of Conopco, Inc. Cosmetic composition
US20050106197A1 (en) 2003-09-26 2005-05-19 Xavier Blin Cosmetic composition comprising a block polymer and a non-volatile silicone oil
WO2005044219A1 (en) 2003-10-31 2005-05-19 The Procter & Gamble Company Skin care composition containing dehydroacetic acid and skin care actives
US6897195B2 (en) 2002-07-24 2005-05-24 Nanjing Zhongshi Chemical Co. Composition of menthol and menthyl lactate, its preparation method and its applications as a cooling agent
NZ520014A (en) 2000-01-10 2005-05-27 Foamix Ltd Pharmaceutical and cosmetic carrier or composition for topical application
US6902737B2 (en) 2001-01-18 2005-06-07 L'oreal Translucent nanoemulsion, production method, and uses thereof in the cosmetic, dermatological and/or ophthalmological fields
EP1537916A1 (en) 2003-12-01 2005-06-08 Rieke Corporation Multiple liquid foamer
US20050123494A1 (en) 2003-11-17 2005-06-09 Swaile David F. Antiperspirant composition and applicator therefor
US20050123496A1 (en) 2003-12-08 2005-06-09 Unilever Home & Personal Care Usa, Division Of Conopco, Inc. Self foaming non-aqueous personal wash cleansers with little or no surfactant
US6914057B1 (en) 1998-09-28 2005-07-05 The Research Foundation Of State University Of New York Inhibitor of cataract formation
US20050148552A1 (en) 2003-11-06 2005-07-07 Ryan Maria E. Methods of treating eczema
US20050153943A1 (en) 2002-05-06 2005-07-14 Ashley Robert A. Methods of simultaneously treating mucositis and fungal infection
WO2005063224A1 (en) 2003-12-23 2005-07-14 Merckle Gmbh Topical preparations containing dimethyl sulfoxide and dexpanthenol
WO2005065652A1 (en) 2004-01-06 2005-07-21 Doron Friedman Non-aqueous composition for oral delivery of insoluble bioactive agents
US20050164993A1 (en) 2002-05-20 2005-07-28 Ashley Robert A. Methods of treating allergic reactions
WO2005076697A2 (en) 2004-02-04 2005-08-25 Foamix Ltd. Cosmetic and pharmaceutical foam with solid matter
US20050186142A1 (en) 2002-10-25 2005-08-25 Foamix Ltd. Kit and composition of imidazole with enhanced bioavailability
US20050189377A1 (en) 2003-11-17 2005-09-01 Beiersdorf Ag Dispenser and cosmetic or dermatological preparation comprising an auxiliary for use with dispenser
US20050196414A1 (en) 2004-03-03 2005-09-08 Essentia Biosystems, Inc. Compositions and methods for topical application and transdermal delivery of botulinum toxins
US20050205086A1 (en) 2002-10-25 2005-09-22 Foamix Ltd. Retinoid immunomodulating kit and composition and uses thereof
US20050207837A1 (en) 2004-03-18 2005-09-22 Bodypoint Designs, Inc. Quick release assembly
US6951654B2 (en) 2001-03-27 2005-10-04 Galen (Chemicals) Limited Intravaginal drug delivery devices for the administration of an antimicrobial agent
US20050222090A1 (en) 2003-12-30 2005-10-06 Gilead Sciences, Inc. Anti-proliferative compounds, compositions, and methods of use thereof
DE102004016710A1 (en) 2004-04-05 2005-10-13 Greppmayr Footcare Gmbh Foamable foot care formulation, effective e.g. against hot or cold feet and dry skin, comprising propellant and oil-in-water emulsion containing stabilizer, surfactant, fatty alcohol and nonionic emulsifier
US6956062B2 (en) 2000-06-09 2005-10-18 Air Liquide Santé (International) Storage-stable compositions of glycerol monoalkyl ethers
US6955816B2 (en) 2001-11-16 2005-10-18 Klysz Beatrice M Anti-aging skin care composition and uses thereof
US20050232869A1 (en) 2002-10-25 2005-10-20 Foamix Ltd. Nonsteroidal immunomodulating kit and composition and uses thereof
WO2005097068A1 (en) 2004-04-08 2005-10-20 Novartis Ag Pimecrolimus foam composition containing hexylene glycol, optionally oleyl alcohol, dimethylisosorbide and/or medium chain triglycerides
US6958154B2 (en) 1998-08-20 2005-10-25 3M Innovative Properties Company Spray on bandage and drug delivery system
US20050245902A1 (en) 2002-02-08 2005-11-03 Brian Cornish Substance delivery device
WO2005102282A1 (en) 2004-04-19 2005-11-03 Strategic Science & Technologies, Llc Transdermal delivery of beneficial substances effected by a hostile biophysical environment
WO2005102539A1 (en) 2004-04-23 2005-11-03 Airspray N.V. Dispensing assembly
US20050244354A1 (en) 2004-04-30 2005-11-03 Sam Speron Oxygenated personal care products
JP2005314323A (en) 2004-04-30 2005-11-10 Sato Pharmaceutical Co Ltd Hair growth formulation
US20050255048A1 (en) 2004-05-15 2005-11-17 Collegium Pharmaceutical, Inc. Sprayable formulations for the treatment of acute inflammatory skin conditions
US20050252995A1 (en) 2004-05-17 2005-11-17 Westphal Nathan R Detachable tube assembly
US20050258189A1 (en) 2004-05-21 2005-11-24 Scott Peterson Reconfigurable metered material dispenser
US6969521B1 (en) 2000-11-28 2005-11-29 Avon Products, Inc. Aerosol insect repellent composition having low VOC content and method of applying same to the skin
US6968982B1 (en) 2002-09-18 2005-11-29 Burns Caleb E S Multiple-mist dispenser
EP1600185A1 (en) 2004-05-28 2005-11-30 Progine Farmaceutici Srl Vaginal spray nozzle
US20050271596A1 (en) 2002-10-25 2005-12-08 Foamix Ltd. Vasoactive kit and composition and uses thereof
US20050268416A1 (en) 2004-06-03 2005-12-08 Sommers J E Foldable lotion applicator
WO2005117813A1 (en) 2004-05-26 2005-12-15 L'oreal Cosmetic mousse formulations
US20050276836A1 (en) 1997-06-11 2005-12-15 Michelle Wilson Coated vaginal devices for vaginal delivery of therapeutically effective and/or health-promoting agents
US20050281755A1 (en) 2004-06-17 2005-12-22 Galderma S.A. Topical foam/mousse compositions for treating psoriasis
US20050281766A1 (en) 2002-03-11 2005-12-22 Avon Products, Inc. Method of improving the aesthetic appearance of epithelia
US20050281749A1 (en) 2004-06-17 2005-12-22 Galderma S.A. Sprayable compositions comprising a combination of pharmaceutical actives and an oily phase
JP2005350378A (en) 2004-06-09 2005-12-22 Pola Chem Ind Inc Warm sensation cosmetic of post foam dosage form
US20050285912A1 (en) 2004-06-28 2005-12-29 Eastman Kodak Company Latency stirring in fluid ejection mechanisms
US20050287081A1 (en) 2004-06-24 2005-12-29 Dpt Laboratories, Ltd. Pharmaceutically elegant, topical anhydrous aerosol foam
WO2006003481A2 (en) 2003-12-16 2006-01-12 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US20060008432A1 (en) 2004-07-07 2006-01-12 Sebastiano Scarampi Gilsonite derived pharmaceutical delivery compositions and methods: nail applications
JP2006008574A (en) 2004-06-25 2006-01-12 Pola Chem Ind Inc Non-aqueous foam cosmetic imparting warm sensation
US6986883B2 (en) 1999-09-09 2006-01-17 Discus Dental, Inc. Increased peroxide content tooth bleaching gel
US20060018937A1 (en) 2002-10-25 2006-01-26 Foamix Ltd. Steroid kit and foamable composition and uses thereof
USRE38964E1 (en) 1995-01-09 2006-01-31 Becton Dickinson And Company One hand needle release system
WO2006011046A1 (en) 2004-07-19 2006-02-02 Warner-Lambert Company Llc Formulation for stimulating hair growth
WO2006010589A2 (en) 2004-07-29 2006-02-02 Mipharm S.P.A. Post foaming gel mousse
US20060029565A1 (en) 2004-08-09 2006-02-09 The Gillette Company Self-heating shave foam product
JP2006036317A (en) 2004-07-29 2006-02-09 Yoshino Kogyosho Co Ltd Metering dispenser
US7002486B2 (en) 2000-12-11 2006-02-21 Lawrence Malcolm G Highway vehicular traffic flow control
WO2006020682A1 (en) 2004-08-12 2006-02-23 Triaccess Technologies, Inc. Level detector for optical receivers
EP0928608B1 (en) 1997-12-25 2006-03-08 Ajinomoto Co., Inc. Cosmetic composition
US20060051301A1 (en) 2002-10-28 2006-03-09 Givaudan Sa Coolant solutions and compositions comprising the same
US20060054634A1 (en) 2002-06-26 2006-03-16 Satoshi Mekata Packaging container for discharge of plurality of contents, packaging product including the packaging container and process for producing the packaging product
US20060057168A1 (en) 2004-08-31 2006-03-16 Connetics Australia Pty Ltd Microemulsion process and composition
WO2006028339A1 (en) 2004-09-04 2006-03-16 Young Dae Kim Nano-emulsion, the use thereof, and preparation method thereof
US7021499B2 (en) 2002-09-13 2006-04-04 Bissell Homecare, Inc. Aerosol package
JP2006103799A (en) 2004-09-30 2006-04-20 L'oreal Sa Distribution assembly for distributing two products
WO2006045170A2 (en) 2004-10-26 2006-05-04 Natura Cosméticos S.A. An oil-in-water nanoemulsion, a cosmetic composition and a cosmetic product comprising it, a process for preparing said nanoemulsion
US20060099151A1 (en) 2002-12-12 2006-05-11 Fritz Neubourg Stable foam cream
US20060110415A1 (en) 2004-11-22 2006-05-25 Bioderm Research Topical Delivery System for Cosmetic and Pharmaceutical Agents
US20060108377A1 (en) 2004-11-19 2006-05-25 Glynn Kenneth P Metered dose squeeze dispenser
US20060110418A1 (en) 2000-09-14 2006-05-25 Nanocluster Technologies, Llc Water-in-oil emulsions and methods
US20060114745A1 (en) 2004-11-02 2006-06-01 Ute Ollmann Apparatus for blending two different components
US20060121073A1 (en) 2004-07-12 2006-06-08 Sandhya Goyal Topical gel formulation comprising insecticide and its preparation thereof
RU2277501C2 (en) 2003-05-16 2006-06-10 Л`Ореаль Product, particularly cosmetic product, metering and dozing device
US7060253B1 (en) 1996-09-20 2006-06-13 Mundschenk David D Topical formulations and delivery systems
US20060140990A1 (en) 2003-09-19 2006-06-29 Drugtech Corporation Composition for topical treatment of mixed vaginal infections
US20060160713A1 (en) 2003-06-17 2006-07-20 Takasago International Corporation Shampoo and body detergent composition
US20060165616A1 (en) 2002-07-22 2006-07-27 Michael Brock Microemulsion containing anti-uv filters and/or anti-dandruff agents
WO2006081327A2 (en) 2005-01-25 2006-08-03 University Of Vermont And State Agricultural College Small molecules that reduce fungal growth
WO2006079632A1 (en) 2005-01-28 2006-08-03 Basf Aktiengesellschaft Use of a water-in-water emulsion polymers in the form of a thickener for cosmetic preparations
US20060177392A1 (en) 2005-02-10 2006-08-10 William Walden Oil-based composition for acne
WO2006091229A2 (en) 2004-06-29 2006-08-31 Allergan, Inc. Methods of modulating intracellular degradation rates of toxins
US20060193789A1 (en) 2002-10-25 2006-08-31 Foamix Ltd. Film forming foamable composition
US20060193813A1 (en) 2005-02-11 2006-08-31 L'oreal Nanoemulsion containing a hydroxylated urea compound
US20060204446A1 (en) 2003-02-06 2006-09-14 Cipla Ltd Topical immunotherapy and compositions for use therein
WO2006100485A1 (en) 2005-03-24 2006-09-28 Transphase Limited A topical composition and its uses
US20060222675A1 (en) 2005-03-29 2006-10-05 Sabnis Ram W Personal care compositions with color changing indicator
US20060233721A1 (en) 2002-10-25 2006-10-19 Foamix Ltd. Foam containing unique oil globules
US20060251684A1 (en) 2003-06-04 2006-11-09 Nanobio Corporation Compositions for inactivating pathogenic microorganisms, methods of making the compositions, and methods of use thereof
JP2006525145A (en) 2003-05-02 2006-11-09 ケーニッヒ ウント バウエル アクチエンゲゼルシャフト System for inspecting printed images
WO2006121610A2 (en) 2005-05-05 2006-11-16 Genencor International, Inc. Personal care compositions and methods for their use
US20060254597A1 (en) 2000-12-14 2006-11-16 40J's Llc Method of treatment of atrophic vaginitis by topical clitoral menthol or a related cooling compound
WO2006120682A2 (en) 2005-05-10 2006-11-16 Dermipsor Ltd. Compositions and methods for treating hyperproliferative epidermal diseases
WO2006122158A2 (en) 2005-05-10 2006-11-16 Xanthone Plus International, Llc Skin care compositions containing xanthones
US7137536B2 (en) 2002-07-22 2006-11-21 Seaquist Perfect Dispensing Foreign, Inc. Inverted aerosol dispenser
US20060263323A1 (en) 2003-03-24 2006-11-23 Becton, Dickinson And Company Invisible antimicrobial glove and hand antiseptic
US20060269485A1 (en) 2002-11-29 2006-11-30 Foamix Ltd. Antibiotic kit and composition and uses thereof
US20060272199A1 (en) 2005-06-02 2006-12-07 Bmc Manufacturing, Llc Aqueous gel candle for use with a warming device
WO2006129161A2 (en) 2005-06-01 2006-12-07 Stiefel Research Australia Pty Ltd Vitamin formulation
WO2006131784A1 (en) 2004-04-28 2006-12-14 Foamix Ltd. Body cavity foams
US20060285912A1 (en) 2005-04-19 2006-12-21 Foamix Ltd. Apparatus and method for releasing a measured amount of content from a container
US20060292080A1 (en) 1998-09-11 2006-12-28 Connetics Australia Pty Ltd Vitamin formulation
US20070010580A1 (en) 2003-05-30 2007-01-11 Gianfranco De Paoli Ambrosi Formulation for chemical peeling
US20070009607A1 (en) 2005-07-11 2007-01-11 George Jones Antibacterial/anti-infalmmatory composition and method
US20070015739A1 (en) 2005-07-15 2007-01-18 Walker Stephen G Use of non-antibacterial tetracycline formulations for inhibiting bacterial spores
US20070020304A1 (en) 2002-10-25 2007-01-25 Foamix Ltd. Non-flammable insecticide composition and uses thereof
US20070017696A1 (en) 2005-07-22 2007-01-25 Hon Hai Precision Industry Co., Ltd. Multi-layer printed circuit board
WO2007010494A1 (en) 2005-07-22 2007-01-25 The Procter & Gamble Company Hair treatment method using dry foam as mechanical support for hair
US20070020213A1 (en) 2002-10-25 2007-01-25 Foamix Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US20070027055A1 (en) 2003-09-29 2007-02-01 Koivisto Bruce M High alcohol content gel-like and foaming compositions
US20070036831A1 (en) 2005-08-09 2007-02-15 Nanobio Corporation Nanoemulsion compositions having anti-inflammatory activity
US20070053943A1 (en) 2003-05-25 2007-03-08 Yuwan Wang Dimethicone-containing sustained release injection formulation
WO2007031621A2 (en) 2005-09-13 2007-03-22 Galderma S.A Metronidazole-based dermatological foam and emulsions for the production thereof
US7195135B1 (en) 1999-07-29 2007-03-27 Valois S.A.S Dispenser having a hinged dispensing head
US20070071688A1 (en) 2000-05-12 2007-03-29 Sanofi-Aventis Pharmaceutical compositions for transdermal administration of anti-inflammatory agents
US20070069046A1 (en) 2005-04-19 2007-03-29 Foamix Ltd. Apparatus and method for releasing a measure of content from a plurality of containers
WO2007039825A2 (en) 2005-05-09 2007-04-12 Foamix Ltd. Saccharide foamable compositions
WO2007050543A2 (en) 2005-10-24 2007-05-03 Collegium Pharmaceutical, Inc. Topical pharmaceutical foam composition
US20070098647A1 (en) 2005-09-28 2007-05-03 Neubourg Skin Care Gmbh & Co. Kg Skin care products
US20070111956A1 (en) 2003-07-03 2007-05-17 Japan Science And Technology Agency Remedy for sarcoidosis and method of treating the same
US7222802B2 (en) 2003-05-23 2007-05-29 Meadwestvaco Corporation Dual sprayer with external mixing chamber
JP2007131539A (en) 2005-11-08 2007-05-31 Koike Kagaku Kk Chilling foam cosmetic
US7226230B2 (en) 2003-07-28 2007-06-05 Raymond Liberatore Spreader
US7225518B2 (en) 2004-02-23 2007-06-05 Boston Scientific Scimed, Inc. Apparatus for crimping a stent assembly
US20070134174A1 (en) 2005-11-03 2007-06-14 Christopher Irwin Personal care composition
US20070141086A1 (en) 2003-11-21 2007-06-21 Ohara Michael K Use of antibiotics as vaccine adjuvants
US20070142263A1 (en) 2005-12-15 2007-06-21 Stahl Katherine D Color changing cleansing composition
JP2007155667A (en) 2005-12-08 2007-06-21 Sumitomo Heavy Ind Ltd Radiation detection unit and radiation inspection apparatus
US20070140998A1 (en) 2003-10-14 2007-06-21 Showa Denko K.K. Agent for skin external use containing salt of ascorbic acid derivative, method for stabilizing the agent for skin external use, and stabilizer
US20070140999A1 (en) 2003-07-18 2007-06-21 Hill Dermaceuticals, Inc. Topical skin care composition containing refined peanut oil
US7235251B2 (en) 1998-02-13 2007-06-26 Beiersdorf Ag Cosmetic or dermatological oil/water emulsions with reduced lipid content
US20070148112A1 (en) 2005-12-28 2007-06-28 Avon Products, Inc. Foaming, color-changing topical composition and method of imparting a cosmetic effect
US20070148194A1 (en) 2005-11-29 2007-06-28 Amiji Mansoor M Novel nanoemulsion formulations
US20070160548A1 (en) 2005-12-13 2007-07-12 Playtex Products, Inc. Moisturizing sunless tanning composition
US20070166274A1 (en) 2006-01-19 2007-07-19 Mazur Leonard L 7-Dimethylamino-6-Demethyl-6-Deoxytetracycline Skin Treatment Kit
WO2007082698A1 (en) 2006-01-19 2007-07-26 Disphar International B.V. Foam-forming composition
WO2007085902A2 (en) 2005-07-19 2007-08-02 Foamix Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US7252816B1 (en) 2006-03-29 2007-08-07 Dow Pharmaceutical Sciences Topical acne vulgairs medication with a sunscreen
WO2007099396A2 (en) 2005-06-07 2007-09-07 Foamix Ltd. Antibiotic kit and composition and uses thereof
US7270828B2 (en) 2001-06-20 2007-09-18 The Procter & Gamble Company Personal care composition comprising hydrophobic gel
US20070224143A1 (en) 2006-03-21 2007-09-27 Kamedis Ltd. Cosmetic and pharmaceutical foam carrier
WO2007111962A2 (en) 2006-03-22 2007-10-04 The Procter & Gamble Company Aerosol product comprising a foaming concentrate composition comprising particulate materials
US20070237724A1 (en) 2006-03-31 2007-10-11 Abram Albert Z Foamable suspension gel
US20070264317A1 (en) 2006-05-15 2007-11-15 Perrigo Israel Pharmaceuticals Ltd. Imiquimod cream formulation
EP1584324B1 (en) 2004-02-27 2007-11-21 Kao Corporation Hair cosmetic composition comprising a dicarboxylic acid and an edetic acid
US20070271235A1 (en) 2000-02-22 2007-11-22 Metacarta, Inc. Geotext Searching and Displaying Results
US20070281999A1 (en) 2006-05-31 2007-12-06 The Dial Corporation Alcohol-containing antimicrobial compositions having improved efficacy
US20070292359A1 (en) 2002-10-25 2007-12-20 Foamix Ltd. Polypropylene glycol foamable vehicle and pharmaceutical compositions thereof
JP2007326996A (en) 2006-06-09 2007-12-20 Alps Electric Co Ltd Lubricating composition for electrical contact
US20070292461A1 (en) 2003-08-04 2007-12-20 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US20070292355A1 (en) 2002-10-25 2007-12-20 Foamix Ltd. Anti-infection augmentation foamable compositions and kit and uses thereof
US20080008397A1 (en) 2006-07-04 2008-01-10 Pavel Kisilev Feature-aware image defect removal
WO2008008397A2 (en) 2006-07-14 2008-01-17 Stiefel Research Australia Pty Ltd Fatty acid pharmaceutical foam
US20080015263A1 (en) 2002-02-27 2008-01-17 Bolotin Elijah M Compositions for delivery of therapeutics and other materials
WO2008010963A2 (en) 2006-07-18 2008-01-24 3M Innovative Properties Company Immune response modifier formulations
US20080031907A1 (en) 2002-10-25 2008-02-07 Foamix Ltd. Cosmetic and pharmaceutical foam
US20080031908A1 (en) 2006-07-25 2008-02-07 L'oreal Oily cosmetic composition in aerosol form
US20080035155A1 (en) 2004-07-09 2008-02-14 Gilead Sciences, Inc. Topical Antiviral Formulations
US20080044444A1 (en) 2002-10-25 2008-02-21 Foamix Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US20080058055A1 (en) 2001-09-28 2008-03-06 Igt Game development architecture that decouples the game logic from the graphics logic
US20080063682A1 (en) 2004-09-23 2008-03-13 Johanne Cashman Pharmaceutical compositions and methods relating to inhibiting fibrous adhesions or inflammatory disease using low sulphate fucans
US20080069779A1 (en) 2003-08-04 2008-03-20 Foamix Ltd. Foamable vehicle and vitamin and flavonoid pharmaceutical compositions thereof
EP1902706A1 (en) 2006-09-25 2008-03-26 Divasa-Farmavic, S.A. Stable pharmaceutical compositions of tetracyclines in solution, method for obtaining them and their uses
WO2008038147A2 (en) 2006-07-05 2008-04-03 Foamix Ltd. Foamable vehicle comprising dicarboxylic acid or dicarboxylic acid ester and pharmaceutical compositions thereof
WO2008041045A1 (en) 2006-10-06 2008-04-10 Piller Istvan A multi chamber container for the production and dispensing of carbon dioxide foam, process for production and use of said foam
US20080131378A1 (en) 2005-07-18 2008-06-05 Walter Keller Aerosol Cream Mousse and Method of Treating Hair
US20080138296A1 (en) 2002-10-25 2008-06-12 Foamix Ltd. Foam prepared from nanoemulsions and uses
US20080153789A1 (en) 2006-12-26 2008-06-26 Femmepharma Holding Company, Inc. Topical administration of danazol
US20080152596A1 (en) 2005-07-19 2008-06-26 Foamix Ltd. Polypropylene glycol foamable vehicle and pharmaceutical compositions thereof
WO2008075207A2 (en) 2006-04-04 2008-06-26 Foamix Ltd. Anti-infection augmentation foamable compositions and kit and uses thereof
US20080167376A1 (en) 2003-09-25 2008-07-10 Dmi Biosciences, Inc. Methods and products which utilize N-acyl-L-aspartic acid
US20080166303A1 (en) 2006-09-08 2008-07-10 Dov Tamarkin Colored or colorable foamable composition and foam
WO2008087148A2 (en) 2007-01-16 2008-07-24 Oystershell N.V. Foamable composition for killing arthropods and uses thereof
US20080188446A1 (en) 2007-02-02 2008-08-07 Warner Chilcott Company Inc. Tetracycline compositions for topical administration
US20080188445A1 (en) 2007-02-02 2008-08-07 Warner Chilcott Company Inc. Tetracycline compositions for topical administration
US20080193762A1 (en) 2002-08-15 2008-08-14 The Rockefeller University Water soluble metal and semiconductor nanoparticle complexes
US20080206161A1 (en) 2002-10-25 2008-08-28 Dov Tamarkin Quiescent foamable compositions, steroids, kits and uses thereof
US20080206155A1 (en) 2006-11-14 2008-08-28 Foamix Ltd. Stable non-alcoholic foamable pharmaceutical emulsion compositions with an unctuous emollient and their uses
WO2008104734A1 (en) 2007-02-28 2008-09-04 Neuropharm Ltd. Treatment of anxiety disorders with minocycline
WO2008110872A2 (en) 2006-06-23 2008-09-18 Foamix Ltd. Foamable compositions and kits comprising one or more of a channel agent, a cholinergic agent, a nitric oxide donor, and related agents and their uses
US20080253973A1 (en) 2002-10-25 2008-10-16 Foamix Ltd. Sensation modifying topical composition foam
US20080255498A1 (en) 2005-08-25 2008-10-16 Houle Philip R Sensitizer Solutions, Systems, and Methods of Use
US20080260655A1 (en) 2006-11-14 2008-10-23 Dov Tamarkin Substantially non-aqueous foamable petrolatum based pharmaceutical and cosmetic compositions and their uses
FR2915891A1 (en) 2007-05-10 2008-11-14 Oreal Cosmetic composition in foam form, useful for e.g. for make-up or non-therapeutic care of keratinous materials, comprises an oily continuous phase and at least structural agent of oily phase comprising silicone polymer
US20080292560A1 (en) 2007-01-12 2008-11-27 Dov Tamarkin Silicone in glycol pharmaceutical and cosmetic compositions with accommodating agent
WO2008152444A2 (en) 2006-11-29 2008-12-18 Foamix Ltd. Foamable waterless compositions with modulating agents
US20080311167A1 (en) 2007-06-12 2008-12-18 Oronsky Bryan T Topical Composition for Treating Pain
US20080317679A1 (en) 2002-10-25 2008-12-25 Foamix Ltd. Foamable compositions and kits comprising one or more of a channel agent, a cholinergic agent, a nitric oxide donor, and related agents and their uses
US20090017147A1 (en) 2005-01-14 2009-01-15 Sederma Cosmetic or Dermopharmaceutical Composition Comprising an Euglena Extract
US20090053290A1 (en) 2006-03-08 2009-02-26 Sand Bruce J Transdermal drug delivery compositions and topical compositions for application on the skin
US20090061001A1 (en) 2005-03-24 2009-03-05 Ensign Laboratories Pty Ltd Sunscreen aerosol spray
US20090093514A1 (en) 2004-12-17 2009-04-09 3M Innovative Properties Company Immune response modifier formulations containing oleic acid and methods
US20090130029A1 (en) 2007-11-21 2009-05-21 Foamix Ltd. Glycerol ethers vehicle and pharmaceutical compositions thereof
WO2009069006A2 (en) 2007-11-30 2009-06-04 Foamix Ltd. Foam containing benzoyl peroxide
WO2009072007A2 (en) 2007-12-07 2009-06-11 Foamix Ltd. Carriers, formulations, methods for formulating unstable active agents for external application and uses thereof
WO2009087578A2 (en) 2008-01-08 2009-07-16 Foamix Ltd. Sensation modifying topical composition foam
WO2009090558A2 (en) 2008-01-14 2009-07-23 Foamix Ltd. Poloxamer foamable pharmaceutical compositions with active agents and/or therapeutic cells and uses
US7575739B2 (en) 2003-04-28 2009-08-18 Foamix Ltd. Foamable iodine composition
US20090214628A1 (en) 2004-09-27 2009-08-27 De Rijk Jan Methods and compositions for treatment of skin
US20090291917A1 (en) 2008-03-06 2009-11-26 Anacor Pharmaceuticals, Inc. Boron-Containing Small Molecules as Anti-Inflammatory Agents
US7654415B2 (en) 2002-03-19 2010-02-02 Airspray International B.V. Dispensing unit
US7700076B2 (en) 2002-10-25 2010-04-20 Foamix, Ltd. Penetrating pharmaceutical foam
US7704518B2 (en) 2003-08-04 2010-04-27 Foamix, Ltd. Foamable vehicle and pharmaceutical compositions thereof
US7758888B2 (en) 2000-04-21 2010-07-20 Sol-Gel Technologies Ltd. Composition exhibiting enhanced formulation stability and delivery of topical active ingredients
US20100221194A1 (en) 2009-02-25 2010-09-02 Loupenok Leon Topical foam composition
US7793807B2 (en) 2003-10-07 2010-09-14 Valois S.A.S. Metering valve and a fluid dispenser device including such a valve
US20100247449A1 (en) 2008-12-23 2010-09-30 Intendis Gmbh Foamable composition essentially free of pharmaceutically active ingredients for the treatment of human skin
US20100286417A1 (en) 2007-02-23 2010-11-11 Hovione Inter Limited Crystalline Minocycline Base and Processes for its Preparation
US7842791B2 (en) 2002-12-19 2010-11-30 Nancy Jean Britten Dispersible pharmaceutical compositions
US20110002969A1 (en) 2008-02-29 2011-01-06 Lipotec, S.A. Cosmetic or pharmaceutical compositions comprising metalloproteinase inhibitors
WO2011006026A1 (en) 2009-07-09 2011-01-13 L'air Liquide Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges Claude Presenting dynamic scada data
WO2011013008A2 (en) 2009-07-29 2011-02-03 Foamix Ltd. Non surface active agent non polymeric agent hydro-alcoholic foamable compositions, breakable foams and their uses
WO2011013009A2 (en) 2009-07-29 2011-02-03 Foamix Ltd. Non surfactant hydro-alcoholic foamable compositions, breakable foams and their uses
WO2011026094A2 (en) 2009-08-31 2011-03-03 Collegium Pharmaceutical, Inc. Stable aerosol topical foams comprising a hypochlorite salt
WO2011039637A2 (en) 2009-10-02 2011-04-07 Foamix Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
GB2474930A (en) 2009-10-02 2011-05-04 Foamix Ltd Topical composition comprising a tetracycline
US7960416B2 (en) 2001-08-03 2011-06-14 Takeda Pharmaceutical Company Limited Stable emulsion composition
US20110207765A1 (en) 2008-10-31 2011-08-25 Moberg Derma Ab Topical composition comprising a combination of at least two penetration enhancing agents
WO2011106026A1 (en) 2010-02-26 2011-09-01 Precision Dermatology, Inc. Emollient foams for treatment of dermatoses
US20110262542A1 (en) 2001-04-05 2011-10-27 Galderma Laboratories Inc. Controlled Delivery of Tetracycline Compounds and Tetracycline Derivatives
WO2011138678A2 (en) 2010-05-04 2011-11-10 Foamix Ltd. Compositions, gels and foams with rheology modulators and uses thereof
US8119109B2 (en) 2002-10-25 2012-02-21 Foamix Ltd. Foamable compositions, kits and methods for hyperhidrosis
US20120064136A1 (en) 2010-09-10 2012-03-15 Nanobio Corporation Anti-aging and wrinkle treatment methods using nanoemulsion compositions
US20120082632A1 (en) 2010-04-21 2012-04-05 Phillips D Howard Topical drug delivery system with dual carriers
US20120087872A1 (en) 2009-04-28 2012-04-12 Foamix Ltd. Foamable Vehicles and Pharmaceutical Compositions Comprising Aprotic Polar Solvents and Uses Thereof
US20120093876A1 (en) 2010-10-13 2012-04-19 Aciex, Inc. Ophthalmic Formulations, Methods Of Manufacture And Methods of Normalizing Meibomian Gland Secretions
US8192749B2 (en) 2003-04-16 2012-06-05 Galderma Laboratories Inc. Methods of simultaneously treating ocular rosacea and acne rosacea
US20120141384A1 (en) 2008-05-06 2012-06-07 Dov Tamarkin Antibacterial conjugated boronic acids and pharmaceutical compositions thereof
US20120148503A1 (en) 2002-10-25 2012-06-14 Dov Tamarkin Non-flammable insecticide composition and uses thereof
US20120156144A1 (en) 2002-10-25 2012-06-21 Foamix Foamable Compositions, Kits and Methods for Hyperhidrosis
US20120164087A1 (en) 2009-04-24 2012-06-28 Carter Daniel C Human Serum Albumin-Based Topical Ointment for Treatment of Acne, Psoriasis, Egfr-Induced Toxicity, Premature Skin Aging and Other Skin Conditions
US8211874B2 (en) 2005-06-03 2012-07-03 Galderma Laboratories Inc. Inhibition of thrombin generation
US20120181201A1 (en) 2009-06-26 2012-07-19 Hovione Inter Limited Topical Formulation Containing a Tetracycline and a Method of Treating Skin Infections Using the Same
WO2012100097A2 (en) 2011-01-19 2012-07-26 Laboratory Skin Care, Inc. Topical minocycline compositions and methods of using the same
US20130115173A1 (en) 2011-11-03 2013-05-09 Precision Dermatology, Inc. Stable Dermatological Aerosol Foams Utilizing Reactive Propellants
US20130161351A1 (en) 2010-07-12 2013-06-27 Foamix Ltd. Apparatus and method for releasing a unit dose of content from a container
US8486374B2 (en) 2003-08-04 2013-07-16 Foamix Ltd. Hydrophilic, non-aqueous pharmaceutical carriers and compositions and uses
US8486376B2 (en) 2002-10-25 2013-07-16 Foamix Ltd. Moisturizing foam containing lanolin
US8512718B2 (en) 2000-07-03 2013-08-20 Foamix Ltd. Pharmaceutical composition for topical application
US8518376B2 (en) 2007-12-07 2013-08-27 Foamix Ltd. Oil-based foamable carriers and formulations
WO2013136192A2 (en) 2012-03-15 2013-09-19 Foamix Ltd. Use of tetracycline compositions for wound treatment and skin restoration
US20130251644A1 (en) 2012-03-22 2013-09-26 Precision Dermatology, Inc. Cyclodextrin-Based Microemulsions, and Dermatological Uses Thereof
US20130261565A1 (en) 2012-03-14 2013-10-03 Becton, Dickinson And Company Angled Retracting Sheath for Safety Needle
US20130296387A1 (en) 2012-05-02 2013-11-07 Samy Saad Topical non-aqueous pharmaceutical formulations
US8592380B2 (en) 2010-03-26 2013-11-26 Precision Dermatology, Inc. Aerosol foams comprising clindamycin phosphate
US8617100B2 (en) 2007-09-04 2013-12-31 Foamix Ltd. Device for delivery of a foamable composition
US8623330B2 (en) 2010-03-18 2014-01-07 Precision Dermatology, Inc. Emollient foams for treatment of seborrheic dermatitis
US8636982B2 (en) 2007-08-07 2014-01-28 Foamix Ltd. Wax foamable vehicle and pharmaceutical compositions thereof
US8652443B2 (en) 2008-02-14 2014-02-18 Precision Dermatology, Inc. Foamable microemulsion compositions for topical administration
US20140121188A1 (en) * 2009-10-02 2014-05-01 Foamix Ltd. Compositions for the improved treatment of acne and related disorders
US20140140937A1 (en) 2009-02-12 2014-05-22 Precision Dermatology, Inc. Foamable Benzoyl Peroxide Compositions for Topical Administration
US8735377B1 (en) 2010-02-04 2014-05-27 Susan Anna Sipos Methods of treating herpes zoster
US20140186269A1 (en) 2013-01-03 2014-07-03 Foamix Ltd. Vehicle compositions essentially free of pharmaceutically active agents for the improved treatment of acne and related disorders
US8778365B1 (en) 2013-01-31 2014-07-15 Merz Pharmaceuticals, Llc Topical compositions and methods for making and using same
US8784780B2 (en) 2010-06-11 2014-07-22 Precision Dermatology, Inc. High oil-content emollient aerosol foam compositions
US8795693B2 (en) 2003-08-04 2014-08-05 Foamix Ltd. Compositions with modulating agents
US20140221320A1 (en) 2011-07-08 2014-08-07 The Research Foundation For The State University Of New York Topical minocycline ointment for suppression of allergic skin responses
US20140228355A1 (en) 2010-08-11 2014-08-14 University Of Medicine And Dentistry New Jersey Medical School Novel D3 Dopamine Receptor Agonists to Treat Dyskinesia in Parkinson's Disease
US20140242016A1 (en) 2013-02-22 2014-08-28 Stiefel Laboratories, Inc. Non-aqueous solid stabilized emulsions
WO2014134427A1 (en) 2013-02-28 2014-09-04 Precision Dermatology, Inc. Controlling the bioavailability of active ingredients in topical formulations
WO2014134394A1 (en) 2013-02-28 2014-09-04 Precision Dermatology, Inc. Topical formulations of corticosteroids with enhanced bioavailability
WO2014151347A1 (en) 2013-03-15 2014-09-25 Revance Therapeutics, Inc. Minocycline derivatives
US8846039B2 (en) 2002-04-26 2014-09-30 Asan Laboratories Company (Cayman), Limited Method for ameliorating pruritus
US8895536B2 (en) 2010-10-29 2014-11-25 Infirst Healthcare Ltd. Compositions and methods for treating chronic inflammation and inflammatory diseases
WO2014201541A1 (en) 2013-06-17 2014-12-24 Contract Pharmaceuticals Limited Non-aerosol foams for topical administration
US20150141381A1 (en) 2001-07-13 2015-05-21 Paratek Pharmaceuticals, Inc. Tetracycline compounds having target therapeutic activities
WO2015075640A1 (en) 2013-11-20 2015-05-28 Lupin Limited Stable pharmaceutical formulation(s) of tetracycline antibiotic
US20150174144A1 (en) 2012-07-13 2015-06-25 Paratek Pharmaceuticals, Inc. Tetracycline compounds for treating neurodegenerative disorders
US20150209296A1 (en) 2013-11-04 2015-07-30 BioPharmX, Inc. Dosage form comprising an active ingredient and a plurality of solid porous microcarriers
WO2015114320A1 (en) 2014-01-28 2015-08-06 Hovione International Ltd Assisted particle size reduction process
WO2015153864A2 (en) 2014-04-02 2015-10-08 Hopkins Patricia T Methods for treating inflammatory conditions
US9192558B2 (en) 2006-12-15 2015-11-24 The Procter & Gamble Company Skin care compositions
US9265740B2 (en) 2008-03-05 2016-02-23 Paratek Pharmaceuticals, Inc.-124418 Minocycline compounds and methods of use thereof
US9271930B2 (en) 2010-12-23 2016-03-01 Galderma Research And Development Dermatological foams obtained from a gel or suspension containing adapalene
US20160128944A1 (en) 2013-06-04 2016-05-12 Vyome Biosciences Pvt. Ltd. Coated particles and compositions comprising same
US20160158261A1 (en) 2002-10-25 2016-06-09 Foamix Pharmaceuticals Ltd. Antibiotic Kit and Composition and Uses Thereof
US20160213757A1 (en) 2008-06-26 2016-07-28 Anterios, Inc. Dermal Delivery
US20160279152A1 (en) 2015-03-23 2016-09-29 BioPharmX, Inc. Pharmaceutical tetracycline composition for dermatological use
US20160287615A1 (en) 2015-04-03 2016-10-06 BioPharmX, Inc. Novel encapsulation of fluorescent, photo-sensitive, or oxygen-sensitive active ingredient for topical application
US20160361320A1 (en) 2015-06-15 2016-12-15 Banner Life Sciences Llc Soft lozenges comprising corticosteroids
US20160361252A1 (en) 2005-08-04 2016-12-15 Patrick Franke Anhydrous multiphase gel system
WO2017029647A1 (en) 2015-08-20 2017-02-23 Meir Eini Tetracycline management of egfr inhibitor associated dermatoses
WO2017030555A1 (en) 2015-08-17 2017-02-23 Bhalani Vinayak T Topical film delivery system
US9592246B2 (en) 2012-11-27 2017-03-14 Hovione International Ltd. Tetracycline topical formulations, preparation and uses thereof
WO2017089809A1 (en) 2015-11-24 2017-06-01 Hovione Scientia Limited Salts of tetracyclines
US9841142B2 (en) 2014-12-22 2017-12-12 Rockwell Automation Technologies, Inc. Single-wire industrial safety system with safety device diagnostic communication
US9849142B2 (en) 2009-10-02 2017-12-26 Foamix Pharmaceuticals Ltd. Methods for accelerated return of skin integrity and for the treatment of impetigo
US20180064638A1 (en) 2016-09-08 2018-03-08 Foamix Pharmaceuticals Ltd. Compositions and methods for treating rosacea and acne
US9931328B2 (en) 2015-07-13 2018-04-03 Dr. Reddy's Laboratories Ltd. Topical retinoid compositions
WO2019082090A1 (en) 2017-10-24 2019-05-02 Glenmark Pharmaceuticals Limited Topical pharmaceutical composition of adapalene and minocycline

Family Cites Families (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5741509A (en) 1996-08-26 1998-04-21 Alvin S. Berlat Silicone wound dressing
GB0218996D0 (en) 2002-08-14 2002-09-25 Novartis Ag Organic compounds
US7309496B2 (en) 2003-07-02 2007-12-18 Colgate-Palmolive Company Composition
CN1528326A (en) 2003-09-29 2004-09-15 中国医学科学院皮肤病研究所 Complex external medicine mainly for acne
US20060024243A1 (en) 2004-08-02 2006-02-02 Agis Industries (1983) Ltd. Foamable compositions containing nitro-imidazoles, processes for preparing same and methods of treatment utilizing same
US10278917B2 (en) 2006-04-14 2019-05-07 Perrigo Israel Pharmaceuticals Ltd. Pharmaceutical compositions comprising silica microspheres
PT1992323E (en) 2007-05-10 2012-05-15 Neubourg Skin Care Gmbh & Co Kg Tenside-free foam formulae
PT2020221E (en) 2007-06-19 2012-05-30 Neubourg Skin Care Gmbh & Co Kg Dms (derma membrane structure) in foaming creams
BRPI0817607A2 (en) 2007-09-30 2014-10-14 Valeant Pharmaceuticals Int SILICONE GEL BASED COMPOSITIONS FOR INJURY HEALING AND SCAR REDUCTION.
EP2280733A1 (en) 2008-05-21 2011-02-09 Galderma Research & Development Maintenance therapy regimen for treating acne
US9814657B2 (en) 2009-04-27 2017-11-14 Premier Dental Products Company Buffered microencapsulated compositions and methods
TWI462920B (en) 2009-06-26 2014-12-01 葛萊伯格有限公司 Novel compound useful for the treatment of degenerative and inflammatory diseases
DK3238709T3 (en) 2011-04-28 2020-09-28 Platform Brightworks Two Ltd IMPROVED PARENTERAL FORMULATIONS OF LIPOFILE PHARMACEUTICALS AND METHODS FOR THE PREPARATION AND USE OF THE SAME
KR20140101333A (en) 2011-10-12 2014-08-19 테바 파마슈티컬 인더스트리즈 리미티드 Treatment of multiple sclerosis with combination of laquinimod and fingolimod
JP6130749B2 (en) * 2013-07-12 2017-05-17 アズビル株式会社 Control system and data collection display method
US9883848B2 (en) 2013-09-13 2018-02-06 Maui Imaging, Inc. Ultrasound imaging using apparent point-source transmit transducer
EP3261619A4 (en) 2015-02-25 2018-10-24 Sun Pharma Advanced Research Company Ltd Nanoparticulate composition
DE102015209752A1 (en) 2015-05-28 2016-12-01 Beiersdorf Ag Sprayable highly viscous cosmetic preparation
US20190307778A1 (en) 2015-08-20 2019-10-10 Foamix Pharmaceuticals Ltd. Tetracycline management of egfr inhibitor associated dermatoses
MX2018012486A (en) 2016-04-12 2019-06-06 Illustris Pharmaceuticals Inc Compositions for topical application of compounds.
US20190262266A1 (en) 2016-10-26 2019-08-29 Oxy Solutions As Formulations
US10821075B1 (en) 2017-07-12 2020-11-03 James Blanchard Compositions for topical application of a medicaments onto a mammalian body surface
US11690998B2 (en) 2017-10-31 2023-07-04 Theradep Technologies, Inc. Methods of treating bacterial infections
US20190255078A1 (en) 2018-02-20 2019-08-22 BioPharmX, Inc. Topical compositions with stable solubilized selective retinoids and/or tetracycline-class antibiotics
US10350226B1 (en) 2018-06-27 2019-07-16 Joshua O. Atiba Therapy and prevention of prion protein complex infections
US20220110869A1 (en) 2018-10-29 2022-04-14 Sol-Gel Technologies Ltd. Topical minocycline foamable compositions
US10968222B2 (en) 2018-10-29 2021-04-06 Theravance Biopharma R&D Ip, Llc 2-azabicyclo hexane JAK inhibitor compound
KR102584365B1 (en) 2018-12-19 2023-10-04 니토 메딕 가부시키가이샤 Foaming external composition
US20200222358A1 (en) 2019-01-15 2020-07-16 Derma Research Group Inc. Topical dermatologic acne treatment cream composition and method of manufacture

Patent Citations (1405)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1159250A (en) 1914-05-01 1915-11-02 Frank Moulton Vaginal irrigator.
US1666684A (en) 1926-01-15 1928-04-17 Carstens Mfg Co H Vaginal douche
US1924972A (en) 1929-04-15 1933-08-29 Carl J Beckert Stabilized egg product
US2085733A (en) 1935-07-15 1937-07-06 John C Bird Shaving cream
US2390921A (en) 1943-03-23 1945-12-11 Ethel Hudson Clark Applicator for facial creams
US2524590A (en) 1946-04-22 1950-10-03 Carsten F Boe Emulsion containing a liquefied propellant gas under pressure and method of spraying same
US2586287A (en) 1948-12-11 1952-02-19 Colagte Palmolive Peet Company Aluminum sulfamate antiperspirant preparation
US2617754A (en) 1949-08-29 1952-11-11 Procter & Gamble Cosmetic cream
US3062715A (en) 1953-11-18 1962-11-06 George S Pfaus Vaginal tablet
US2767712A (en) 1954-03-01 1956-10-23 Neil S Waterman Medicinal applicator
GB808104A (en) 1955-01-04 1959-01-28 Udylite Res Corp Electrodeposition of copper from aqueous alkaline cyanide solutions
GB808105A (en) 1956-06-15 1959-01-28 Ici Ltd New pharmaceutical compositions
US3092555A (en) 1958-04-21 1963-06-04 Roy H Horn Relatively collapsible aerosol foam compositions
US3144386A (en) 1958-05-09 1964-08-11 Merck & Co Inc Mastitis aerosol foam
US2968628A (en) 1958-10-17 1961-01-17 Shulton Inc Propellant composition
US3178352A (en) 1959-02-27 1965-04-13 Erickson Roy Shaving method and composition therefor
US3141821A (en) 1959-03-17 1964-07-21 Lehn & Fink Products Corp Synergistic combination of alkyl sulfonates, alkylaryl sulfonates and topical antibacterial agents for local antisepsis
US3004894A (en) 1959-04-07 1961-10-17 Upjohn Co Therapeutic composition comprising tetracycline and a dioxolane
GB922930A (en) 1959-09-21 1963-04-03 Sunnen Joseph Spermicidal composition and method of making same
US3142420A (en) 1959-11-09 1964-07-28 Neotechnic Eng Ltd Metering dispenser for aerosol with fluid pressure operated piston
US3092255A (en) 1960-02-05 1963-06-04 Robert F Hohman Sorting apparatus
US3067784A (en) 1960-04-14 1962-12-11 Esta Medical Lab Inc Adapter connecting aerosol container valve stem to dispenser for filling said dispenser
GB933486A (en) 1960-10-26 1963-08-08 Vantorex Ltd Improvements in or relating to aerosol foams
US3154075A (en) 1960-11-02 1964-10-27 Norwich Pharma Co Vaginal applicator
GB998490A (en) 1961-06-03 1965-07-14 Albert Fritz Albach A foam projector
US3334147A (en) 1962-02-28 1967-08-01 Economics Lab Defoaming and surface active compositions
GB1033299A (en) 1962-08-03 1966-06-22 Colgate Palmolive Co Pressurized compositions
US3330730A (en) 1962-08-03 1967-07-11 Colgate Palmolive Co Pressurized emulsion quick breaking foam compositions
US3252859A (en) 1962-10-24 1966-05-24 Masti Kure Company Inc Colloidal silica-oil composition and method of using same
US3244589A (en) 1962-10-26 1966-04-05 Sunnen Alkyl phenoxy polyethoxy ether spermicidal aerosol
US3261695A (en) 1962-12-24 1966-07-19 Gen Foods Corp Process for preparing dehydrated foods
US3298919A (en) 1962-12-26 1967-01-17 Dow Corning Shaving cream containing polysiloxanes
US3383280A (en) 1963-01-09 1968-05-14 Miles Lab Dermatological abradant stick-type applicator
DE1882100U (en) 1963-01-22 1963-11-07 Helene Jeanne Colombe Roger DEVICE WITH A CANULE OR PROBE FOR THE TREATMENT OF PARTICULAR DISEASES OF THE VAGINARY WITH AEROSOLS.
US3149543A (en) 1963-03-04 1964-09-22 Ingersoll Rand Co Non-lubricated piston
US3574821A (en) 1963-05-31 1971-04-13 Mediline Ag Feminine hygiene spray deodorant compositions
GB1026831A (en) 1963-05-31 1966-04-20 Mediline Ag Preparations for use in feminine hygiene
US3824303A (en) 1963-07-24 1974-07-16 Yardley Of London Inc Collapsible foam pre-electric shave lotion containing diester lubricants
GB1081949A (en) 1963-08-12 1967-09-06 Avon Prod Inc Improvements in cosmetic mask
US3333333A (en) 1963-08-14 1967-08-01 Rca Corp Method of making magnetic material with pattern of embedded non-magnetic material
US3236457A (en) 1963-08-21 1966-02-22 John R Kennedy Composite spray container assembly
US3263867A (en) 1963-12-26 1966-08-02 Valve Corp Of America Metering button-type aerosol actuator
US3395214A (en) 1964-01-09 1968-07-30 Scholl Mfg Co Inc Antiperspirant composition providing a readily collapsible sprayable foam
GB1162684A (en) 1964-01-13 1969-08-27 Aerosol Inv S & Dev S A A I D Actuator Button for Pressurised Aerosol Dispensing Containers
US3369034A (en) 1964-04-27 1968-02-13 Eversharp Inc Process for separating saponifiables and unsaponifiables in marine animal oils
US3303970A (en) 1964-07-14 1967-02-14 Jerome Marrow Device for simultaneously dispensing from plural sources
US3395215A (en) 1964-10-15 1968-07-30 Colgate Palmolive Co Pressurized lotion composition
US3384541A (en) 1964-10-28 1968-05-21 William G. Clark Spermicidal vaginal pharmaceutical concentrate for producing nonaqueous foam with aerosol propellants
US3263869A (en) 1964-11-03 1966-08-02 Calmar Inc Liquid dispenser with overcap
US3342845A (en) 1964-11-05 1967-09-19 Upjohn Co Terphenyl triisocyanates
US3419658A (en) 1965-01-25 1968-12-31 Du Pont Nonaqueous aerosol foams containing mineral oil
US3346451A (en) 1965-01-27 1967-10-10 S E Massengill Company Concentrated liquid lactic acid douche preparation containing aromatics
US3301444A (en) 1965-08-12 1967-01-31 Oel Inc Aerosol metering valve
US3456052A (en) 1965-09-28 1969-07-15 Garrett Lab Inc Aerosol composition containing butoxymonoether of a polyoxyalkylene glycol
GB1121358A (en) 1965-10-21 1968-07-24 Bristol Myers Co Aerosol manufacture
US3849569A (en) 1965-12-02 1974-11-19 Glaxo Lab Ltd Composition containing procaine penicillin
GB1170152A (en) 1966-01-10 1969-11-12 Rexall Drug Chemical Pressurized Compositions and Method of Preparation therefor
US3401849A (en) 1966-05-24 1968-09-17 Robert L. Weber Low force metering valve
US3886084A (en) 1966-09-29 1975-05-27 Champion Int Corp Microencapsulation system
US3377004A (en) 1966-10-03 1968-04-09 Gen Mills Inc Metered dispensing container
GB1201918A (en) 1966-12-21 1970-08-12 Bespak Industries Ltd Improvements in or relating to valves for pressurised dispensers
US3527559A (en) 1967-01-05 1970-09-08 Standard Pharmacal Corp Dense aqueous aerosol foam depilatory compositions containing a mixture of alkaline metal and alkali metal thioglycolates and a fatty alcohol-alkylene oxide wax emulsifying agent
US3366494A (en) 1967-02-15 1968-01-30 Du Pont Pressurized aerosol food emulsions
US3561262A (en) 1967-10-26 1971-02-09 Magnaflux Corp Water soluble developer
US3540448A (en) 1968-01-17 1970-11-17 Joseph Sunnen Rechargeable applicator for dispensing substances in a foam condition
DE1926796A1 (en) 1968-05-27 1970-03-19 Dudiuyt Jean Paul Aerosol compsn. and container
US3563098A (en) 1968-06-28 1971-02-16 Rex Chainbelt Inc Automatic quick release mechanism
US3559890A (en) 1968-09-03 1971-02-02 William R Brooks Foam dispenser
US3878118A (en) 1968-09-06 1975-04-15 Wilkinson Sword Ltd Self-heating chemical compositions
US3667461A (en) 1968-11-05 1972-06-06 Paul A Zamarra Disposable syringe
US3912665A (en) 1969-02-06 1975-10-14 Spitzer Joseph G Emulsified propellant compositions for foamed structures such as applicator pads, and process
US3866800A (en) 1969-02-12 1975-02-18 Alberto Culver Co Non-pressurized package containing self-heating products
US3966090A (en) 1969-02-17 1976-06-29 Dart Industries Inc. Package for dispensing an antiseptic composition
US4001391A (en) 1969-04-18 1977-01-04 Plough, Inc. Means for depositing aerosol sprays in buttery form
US3819524A (en) 1969-06-17 1974-06-25 Colgate Palmolive Co Cosmetic composition for thermal dispensing
US3577518A (en) 1969-07-18 1971-05-04 Nat Patent Dev Corp Hydrophilic hairspray and hair setting preparations
US3787566A (en) 1969-07-29 1974-01-22 Holliston Labor Inc Disinfecting aerosol compositions
US3882228A (en) 1969-11-28 1975-05-06 Aspro Nicholas Ltd Analgesic formulations
GB1351761A (en) 1971-02-04 1974-05-01 Wilkinson Sword Ltd Substituted p-menthane carboxamides and compositions containing them
GB1353381A (en) 1971-02-04 1974-05-15 Wilkinson Sword Ltd Substituted p-menthanes and compositions containing them
GB1351762A (en) 1971-02-14 1974-05-01 Wilkinson Sword Ltd Tobacco and tobacco-containing manufactures
GB1347950A (en) 1971-03-08 1974-02-27 Bristol Myers Co Antiperspirant aerosol system
GB1376649A (en) 1971-07-12 1974-12-11 Bristol Myers Co Anhydrous aerosol foam
US3770648A (en) 1971-07-12 1973-11-06 Bristol Myers Co Anhydrous aerosol foam
GB1408036A (en) 1971-09-13 1975-10-01 Treuhandvereinigung Ag Hair preparations
US3912667A (en) 1971-09-13 1975-10-14 Spitzer Joseph G Structures such as applicator pads for cleaning and other purposes, propellant compositions for forming the same and process
US3997467A (en) 1971-11-26 1976-12-14 Pharmacia Aktiebolag Foam forming composition
GB1397285A (en) 1971-11-26 1975-06-11 Pharmacia Ab Foam forming composition
US3890305A (en) 1971-12-30 1975-06-17 Ciba Geigy Ag Divinyldiphenyl compounds
US3963833A (en) 1972-06-02 1976-06-15 Colgate-Palmolive Company Antiperspirant composition and method containing a dihydro-benzofuran and an astringent metal salt
US3841525A (en) 1972-06-14 1974-10-15 N Siegel Aerosol spray device with cam activator
US3849580A (en) 1972-09-05 1974-11-19 American Home Prod Aerosol dispensing system for anhydrous edible fat compositions
US3751562A (en) 1972-09-22 1973-08-07 Princeton Biomedix Medicated gelled oils
US3970584A (en) 1973-02-14 1976-07-20 S. C. Johnson & Son, Inc. Aerosol package containing a foam-forming emulsion and propellent system
US4439416A (en) 1973-03-23 1984-03-27 Colgate-Palmolive Company Self-heating shaving composition
US3959160A (en) 1973-05-16 1976-05-25 Wilkinson Sword Limited Aerosol shaving foam compositions
US4001442A (en) 1973-07-18 1977-01-04 Elastin-Werk Aktiengesellschaft Collagen-containing preparations
US4110426A (en) 1973-07-24 1978-08-29 Colgate-Palmolive Company Method of treating skin and hair with a self-heated cosmetic
US3865275A (en) 1973-07-30 1975-02-11 Raymond Lee Organization Inc Apparatus for operating an aerosol can
US3929985A (en) 1974-01-18 1975-12-30 Richardson Merrell Inc Anhydrous candicidin foam compositions
GB1489672A (en) 1974-01-25 1977-10-26 Procter & Gamble Oral composition
GB1457671A (en) 1974-01-31 1976-12-08 Wilkinson Sword Ltd Flavour
US3923970A (en) 1974-03-29 1975-12-02 Carter Wallace Stable aerosol shaving foams containing mineral oil
US3962150A (en) 1974-04-10 1976-06-08 Richardson-Merrell Inc. Foam producing cleansing compositions
US3953591A (en) 1974-04-29 1976-04-27 The Procter & Gamble Company Fatty acid, polysiloxane and water-soluble polymer containing skin conditioning emulsion
US3966632A (en) 1974-06-06 1976-06-29 G. D. Searle & Co. Vegetable oil emulsion
US4145411A (en) 1974-09-05 1979-03-20 Colgate-Palmolive Company Pressurized foaming shaving composition
US4254104A (en) 1974-11-12 1981-03-03 Shiseido Co., Ltd. Process for preparing stable oil-in-water emulsions
US4052513A (en) 1974-12-13 1977-10-04 Plough, Inc. Stable topical anesthetic compositions
US3952916A (en) 1975-01-06 1976-04-27 Warner-Lambert Company Automatic dispenser for periodically actuating an aerosol container
US4019657A (en) 1975-03-03 1977-04-26 Spitzer Joseph G Aerosol containers for foaming and delivering aerosols
US3970219A (en) 1975-03-03 1976-07-20 Spitzer Joseph G Aerosol containers for foaming and delivering aerosols and process
US4018396A (en) 1975-05-05 1977-04-19 Bechtel International Corporation Embedded housing for ore crusher
US3993224A (en) 1975-09-08 1976-11-23 Aerosol Investments, Ltd. Spout for two-component resin dispenser
DE2608226A1 (en) 1976-02-28 1977-09-08 Haarmann & Reimer Gmbh AGENTS WITH PHYSIOLOGICAL COOLING EFFECT
IL49491A (en) 1976-04-29 1979-09-30 Rosenberg Peretz Quickly-attachable connector for plastic pipes
US4102995A (en) 1976-05-13 1978-07-25 Westwood Pharmaceuticals Inc. Tar gel formulation
US4124149A (en) 1976-07-19 1978-11-07 Spitzer Joseph G Aerosol container with position-sensitive shut-off valve
US4151272A (en) 1976-08-02 1979-04-24 American Cyanamid Company Wax-like antiperspirant stick compositions
GB1561423A (en) 1976-08-25 1980-02-20 Mundipharma Ag Sprayable germicidal foam compositions
US4252787A (en) 1976-12-27 1981-02-24 Cambridge Research And Development Group Anti-fertility composition and method
US4310510A (en) 1976-12-27 1982-01-12 Sherman Kenneth N Self administrable anti-fertility composition
US4083974A (en) 1977-03-07 1978-04-11 The Upjohn Company Topical steroidal anti-inflammatory preparations containing polyoxypropylene 15 stearyl ether
US4386104A (en) 1977-04-19 1983-05-31 Nazzaro Porro Marcella Process for the treatment of acne
GB2004746A (en) 1977-10-03 1979-04-11 Scherico Ltd Compositions containing benzocaine
US4529601A (en) 1977-12-01 1985-07-16 Astra Lakemedel Aktiebolag Local anesthetic mixture for topical application and method for obtaining local anesthesia
US4292326A (en) 1977-12-30 1981-09-29 Nazzaro Porro Marcella Process for treatment of hyperpigmentary dermatoses
US4160827A (en) 1978-02-06 1979-07-10 The Upjohn Company Metronidazole phosphate and salts
US4229432A (en) 1978-04-19 1980-10-21 Bristol-Myers Company Antiperspirant stick composition
US4603812A (en) 1978-06-27 1986-08-05 The Dow Chemical Company Foam-generating pump sprayer
US4178373A (en) 1978-08-21 1979-12-11 William H. Rorer, Inc. Coal tar gel composition
US4214000A (en) 1978-10-30 1980-07-22 Johnson & Johnson Zinc salt of all-trans-retinoic acid for the treatment of acne
JPS5569682A (en) 1978-11-20 1980-05-26 Toyo Aerosol Kogyo Kk Foam shrinkable composition
US4213979A (en) 1978-12-18 1980-07-22 Plough, Inc. Stable sprayable hydrocortisone product
US4954487A (en) 1979-01-08 1990-09-04 The Procter & Gamble Company Penetrating topical pharmaceutical compositions
US4439441A (en) 1979-01-11 1984-03-27 Syntex (U.S.A.) Inc. Contraceptive compositions and methods employing 1-substituted imidazole derivatives
US4226344A (en) 1979-02-06 1980-10-07 Booth, Inc. Constant flow valve actuator
CH639913A5 (en) 1979-03-16 1983-12-15 Aerosol Service Ag Container for receiving and delivering a liquid substance
US4230701A (en) 1979-03-21 1980-10-28 Hoffmann-La Roche Inc. Administration of biologically active vitamin D3 and vitamin D2 materials
US4335120A (en) 1979-03-21 1982-06-15 Hoffmann-La Roche Inc. Administration of biologically active vitamin D3 and vitamin D2 materials
US4278206A (en) 1979-04-13 1981-07-14 Ae Development Corporation Non-pressurized dispensing system
US4241048A (en) 1979-05-01 1980-12-23 Bristol-Myers Company Suspension composition of benzocaine
FR2456522A1 (en) 1979-05-18 1980-12-12 Kao Corp Insulin compsns. for admin via mucosa - contg. selected acids to increase absorption pref. also contg. a surfactant and a protease inhibitor
US4268499A (en) 1979-06-07 1981-05-19 Dow Corning Corporation Antiperspirant emulsion compositions
US4241149A (en) 1979-07-20 1980-12-23 Temple University Canal clathrate complex solid electrolyte cell
US4447486A (en) 1979-08-02 1984-05-08 Bayer Aktiengesellschaft Surface-sealed moldings of cellular polyurethane elastomers and a process for their production
JPS5639815A (en) 1979-09-04 1981-04-15 Toyota Motor Corp Broaching machine
US4271149A (en) 1979-09-21 1981-06-02 West Agro-Chemical, Inc. Germicidal iodine compositions with enhanced iodine stability
US4271149B1 (en) 1979-09-21 1983-04-19
US4299826A (en) 1979-10-12 1981-11-10 The Procter & Gamble Company Anti-acne composition
US4385161A (en) 1980-01-10 1983-05-24 Imperial Chemical Industries Limited Olefine polymerization process
US4309995A (en) 1980-01-28 1982-01-12 Sacco Susan M Vaginal irrigation apparatus
US4427670A (en) 1980-03-27 1984-01-24 Mitsubishi Chemical Industries Limited Skin preparation
US4363806A (en) 1980-06-19 1982-12-14 Aktiebolaget Draco Pharmaceutical composition
US4338211A (en) 1980-06-30 1982-07-06 The Procter & Gamble Company Liquid surfactant skin cleanser with lather boosters
US4508705A (en) 1980-07-02 1985-04-02 Lever Brothers Company Skin treatment composition
US4323582A (en) 1980-07-21 1982-04-06 Siegel Norman H Method of treating animals and humans for internal and external parasites
JPS5744429A (en) 1980-07-31 1982-03-12 Kobe Steel Ltd Pipe expanding method by drawing
US4329990A (en) 1980-08-07 1982-05-18 Sneider Vincent R Expanding swab applicator
US4325939A (en) 1980-09-22 1982-04-20 Richardson-Vicks Inc. Zinc derivatives and their use in dental compositions
US4305936A (en) 1980-10-09 1981-12-15 Dermik Laboratories Topical corticosteroid formulations
US4292250A (en) 1980-11-17 1981-09-29 Wisconsin Alumni Research Foundation Vitamin D derivatives
EP0052404A2 (en) 1980-11-19 1982-05-26 THE PROCTER &amp; GAMBLE COMPANY Non-yellowing topical pharmaceutical composition
WO1982001821A1 (en) 1980-11-27 1982-06-10 Kovacs Andras Antimycotic synergistic pharmaceutical compositions and process for the preparation thereof
US4576961A (en) 1980-12-03 1986-03-18 Lorck Henning O B Antibiotic heterocyclic oxygen compounds and use
US4352808A (en) 1980-12-12 1982-10-05 Schering Corporation 3-Aralkyloxy-2,3-dihydro-2-(imidazolylmethyl)benzo(b)thiophenes and related derivatives, their use as antimicrobials and pharmaceutical formulations useful therefore
US4323694A (en) 1981-04-13 1982-04-06 Finetex, Inc. Benzoic acid esters
US4522948A (en) 1981-04-24 1985-06-11 Syntex (U.S.A.) Inc. Spermicidal substituted 1-(cycloalkyl)alkylimidazoles
US4393066A (en) 1981-06-05 1983-07-12 Garrett David M Method for treatment of herpetic lesions
US4607101A (en) 1981-08-27 1986-08-19 Jaye-Boern Laboratories, Inc. Method of treating acne vulgaris with a composition containing carbamide peroxide
US4469674A (en) 1981-09-03 1984-09-04 Richardson-Vicks Inc. Stable oral compositions containing zinc and fluoride compounds
US4440320A (en) 1981-11-30 1984-04-03 Wernicke Steven A Foam dispensing apparatus
US5089252A (en) 1982-01-15 1992-02-18 L'oreal Cosmetic composition for treating keratin fibres, and process for treating the latter
GB2114580A (en) 1982-02-16 1983-08-24 Oreal Composition intended for treating the hair skin or nails containing at least one cationic polymer and at least one anionic latex
US5087618A (en) 1982-05-18 1992-02-11 University Of Florida Redox carriers for brain-specific drug delivery
US4529605A (en) 1983-01-12 1985-07-16 Una E. Lynch Bathing oil composition
US4661340A (en) 1983-06-06 1987-04-28 Interkemia Vegyipari Gazdasagi Tarsasag Quail egg based stabilized foam compositions for cosmetic purposes
US4981679A (en) 1983-06-08 1991-01-01 Briggs Joseph H Method and composition for the treatment of burns
JPS601113A (en) 1983-06-20 1985-01-07 Kao Corp Hair-nourishing and hair-growing agent
US4552872A (en) 1983-06-21 1985-11-12 The Procter & Gamble Company Penetrating topical pharmaceutical compositions containing corticosteroids
US4725609A (en) 1983-11-21 1988-02-16 Burroughs Wellcome Co. Method of promoting healing
US4612193A (en) 1983-12-23 1986-09-16 Del Laboratories, Inc. Sty ointment and method of using the same
GB2153686B (en) 1984-02-02 1987-07-22 Dunlop Ltd Intravaginal device
US4985459A (en) 1984-02-08 1991-01-15 Richardson-Vicks, Inc. Analgesic and anti-inflammatory compositions comprising diphenhydramine and methods of using same
EP0156507A1 (en) 1984-02-23 1985-10-02 Ortho Pharmaceutical Corporation Antifungal dermatological solution
US4678463A (en) 1984-03-01 1987-07-07 Millar Thomas D Devices for insertion into a body cavity of an animal and/or applicators therefor
US4628063A (en) 1984-03-08 1986-12-09 Dana P. Brigham Antiviral pharmaceutical preparations and methods for their use
US4574052A (en) 1984-05-31 1986-03-04 Richardson-Vicks Inc. Crackling aerosol foam
US4661524A (en) 1984-06-29 1987-04-28 Beecham Group P.L.C. Topical treatment and composition
US4956049A (en) 1984-08-06 1990-09-11 Ciba-Geigy Corporation Process for sizing paper with anionic hydrophobic sizing agents and cationic retention aids
US4595526A (en) 1984-09-28 1986-06-17 Colgate-Palmolive Company High foaming nonionic surfacant based liquid detergent
US4836217A (en) 1984-10-01 1989-06-06 Fischer Torkel I Hypersensitivity test means
GB2166651A (en) 1984-10-30 1986-05-14 Elan Corp Plc Controlled release powder and process for its preparation
US4741855A (en) 1984-11-09 1988-05-03 The Procter & Gamble Company Shampoo compositions
US4701320A (en) 1984-11-29 1987-10-20 Lederle (Japan), Ltd. Composition stably containing minocycline for treating periodontal diseases
US4627973A (en) 1984-12-14 1986-12-09 Charles Of The Ritz Group Ltd. Skin mousse
EP0186453A2 (en) 1984-12-20 1986-07-02 Warner-Lambert Company A non-irritating cleansing composition
US4673569A (en) 1985-02-12 1987-06-16 Faberge Incorporated Mousse hair composition
US5002680A (en) 1985-03-01 1991-03-26 The Procter & Gamble Company Mild skin cleansing aerosol mousse with skin feel and moisturization benefits
JPS61275395A (en) 1985-03-01 1986-12-05 ザ、プロクタ−、エンド、ギヤンブル、カンパニ− Gentle cleaning mooth having benefit imparting skin feeling and dampness
GB2172298B (en) 1985-03-01 1988-11-23 Procter & Gamble Mild detergent mousse
WO1986005389A1 (en) 1985-03-18 1986-09-25 Product Resources International, Inc. Exothermic stable foam compositions
EP0216856B1 (en) 1985-03-18 1991-07-31 Product Resources International, Inc. Aerosol foam
US5094853A (en) 1985-04-26 1992-03-10 S. C. Johnson & Son, Inc. Method of preparing a water-soluble stable arthropodicidally-active foam matrix
US4965063A (en) 1985-05-24 1990-10-23 Irene Casey Cleaner and disinfectant with dye
US4798682A (en) 1985-06-18 1989-01-17 Henkel Kommanditgesellschaft Auf Aktien Oil-in-water emulsions with increased viscosity under shear stress
US4672078A (en) 1985-07-03 1987-06-09 Schering-Plough Corporation Urea stabilized with a lactone in various pharmaceutical and cosmetic preparations
US4877805A (en) 1985-07-26 1989-10-31 Kligman Albert M Methods for treatment of sundamaged human skin with retinoids
EP0211550B1 (en) 1985-08-01 1991-04-10 Deutsche Ici Gmbh Composition for personal care products comprising alkoxylated fatty alcohol and polysiloxane
US4806262A (en) 1985-08-14 1989-02-21 The Procter & Gamble Company Nonlathering cleansing mousse with skin conditioning benefits
EP0213827A2 (en) 1985-08-14 1987-03-11 The Procter & Gamble Company Nonfoaming cleansing mousse with skin conditioning benefits
EP0214865A2 (en) 1985-09-11 1987-03-18 Chesebrough-Pond's Inc. High oil containing anhydrous foamable compositions
US4752465A (en) 1985-09-20 1988-06-21 Product Resources International, Inc. Aerosol foam
FR2591331A1 (en) 1985-12-10 1987-06-12 Drevet Jean Baptiste Device for dispensing metered portions of a product contained in a pressurised receptacle
US4837378A (en) 1986-01-15 1989-06-06 Curatek Pharmaceuticals, Inc. Topical metronidazole formulations and therapeutic uses thereof
US4804674A (en) 1986-03-26 1989-02-14 Euroceltique, S.A. Vaginal pharmaceutical composition
JPS62241701A (en) 1986-04-11 1987-10-22 Maeda Kogyo Kk Quick releasing device for hub for bicycle
US5902789A (en) 1986-04-23 1999-05-11 Fisons Corporation Nasal administration of drugs
US4826048A (en) 1986-04-29 1989-05-02 Ing. Erich Pfeiffer Gmbh & Co. Kg Dispenser for manually discharging plural media
US4792062A (en) 1986-05-09 1988-12-20 L'oreal Package for two pressurized receptacles
US4975466A (en) 1986-06-05 1990-12-04 Ciba-Geigy Corporation Pharmaceutical preparations for topical application and their use in the treatment of inflammatory skin diseases
US4770634A (en) 1986-06-11 1988-09-13 Pellico Michael A Method for treating teeth with foamable fluoride compositions
US4738396A (en) 1986-06-18 1988-04-19 Matsuda K. K. Vehicle air conditioner
US4837019A (en) 1986-08-11 1989-06-06 Charles Of The Ritz Group Ltd. Skin treatment composition and method for treating burned skin
US4906453A (en) 1986-08-12 1990-03-06 Jumpeer Nails, Inc. Mousse product
US4808388A (en) 1986-08-20 1989-02-28 Merz + Co. Gmbh & Co. Foamable creams
WO1988001502A1 (en) 1986-09-05 1988-03-10 The Upjohn Company Sebum-dissolving nonaqueous minoxidil formulation
AU8025787A (en) 1986-09-12 1988-04-07 Upjohn Company, The Foams for delivery of minoxidil
WO1988001863A1 (en) 1986-09-12 1988-03-24 The Upjohn Company Foams for delivery of minoxidil
US4876083A (en) 1986-09-15 1989-10-24 L'oreal Composition in the form of an aerosol foam, based on a polymer derived from quaternized cellulose and an anionic polymer
JPS63119420A (en) 1986-11-08 1988-05-24 Hisamitsu Pharmaceut Co Inc Foamy aerosol anti-inflammatory analgesic preparation
EP0270316A2 (en) 1986-12-04 1988-06-08 Pfizer Inc. Topical compositions comprising 1-substituted imidazoles and NSAIDs for treatment of acne
US4822613A (en) 1986-12-15 1989-04-18 S. C. Johnson & Son, Inc. Water-soluble foamable insecticidally-active compositions
US4822614A (en) 1986-12-19 1989-04-18 S. C. Johnson & Son, Inc. Bioactive film-forming composition for control of crawling insects and the like
US5889054A (en) 1986-12-23 1999-03-30 Tristrata Technology, Inc. Method of using beta hydroxy acids for treating wrinkles
US4863900A (en) 1987-01-15 1989-09-05 The Research Foundation Of State University Of New York Method for reducing viral transmission with poly-L-histidine
US4844902A (en) 1987-02-17 1989-07-04 Bayer Aktiengesellschaft Topically applicable formulations of gyrase inhibitors in combination with corticosteroids
US4828837A (en) 1987-03-30 1989-05-09 Liposome Technology, Inc. Non-crystalline minoxidil composition, its production and application
US4933330A (en) 1987-04-01 1990-06-12 Dak-Laboratoriet Benzoic acid derivatives and use thereof
US4851154A (en) 1987-04-10 1989-07-25 L'oreal Detergent and foaming cosmetic composition delaying the regreasing of hair
WO1988008316A1 (en) 1987-04-21 1988-11-03 Chattan Nominees Pty. Ltd. Vaginal douche
US5013297A (en) 1987-04-21 1991-05-07 Cattanach John F Vaginal douche
GB2206099A (en) 1987-05-13 1988-12-29 Valois A metering valve for a liquid charged with a propellent liquid of liquified gas and usable in the upsidedown position
US4867967A (en) 1987-06-04 1989-09-19 Crutcher Wilbert L Method for the treatment of pseudofolliculitis barbae
US4780309A (en) 1987-06-16 1988-10-25 Warner-Lambert Company Edible aerosol foam compositions and method of preparing same
US4849117A (en) 1987-06-17 1989-07-18 Sanitek Products, Inc. Concentrated composition for forming an aqueous foam
EP0297436A2 (en) 1987-07-02 1989-01-04 Carl Richard Thornfeldt Treatment of hyperhidrosis and ichthyosis
US4885282A (en) 1987-07-02 1989-12-05 Thornfeldt Carl R Treatment of hyperhidrosis, ichthyosis and wrinkling
US4993496A (en) 1987-07-06 1991-02-19 Total Walther Feuerschutz Gmbh Quick release valve for sprinkler head
US5196405A (en) 1987-07-08 1993-03-23 Norman H. Oskman Compositions and methods of treating hemorrhoids and wounds
JPH01100111A (en) 1987-08-06 1989-04-18 Johnson & Johnson Consumer Prod Inc Skin care composition
US4847068A (en) 1987-08-06 1989-07-11 Johnson & Johnson Consumer Products, Inc. Skin care compositions
US4913893A (en) 1987-08-28 1990-04-03 Clairol Incorporated Aerosol hair setting composition containing an alginate
US5753270A (en) 1987-09-16 1998-05-19 Patrick A. Beauchamp Topical treatment of diseased skin disorders
JPH01156906A (en) 1987-09-23 1989-06-20 L'oreal Sa Skin-conditioning aerosol foam composition
US4981677A (en) 1987-09-23 1991-01-01 L'oreal Petrolatum-containing aerosol foam concentrate
US4784842A (en) 1987-09-25 1988-11-15 Jean London Therapeutic composition for treatment of cuts, burns and abrasions
US4772427A (en) 1987-12-01 1988-09-20 Colgate-Palmolive Co. Post-foaming gel shower product
US5143717A (en) 1987-12-30 1992-09-01 Code Blue Medical Corporation Burn foam and delivery system
WO1993025189A1 (en) 1987-12-30 1993-12-23 Ballard Med Prod Burn foam and delivery system
EP0326196B1 (en) 1988-01-14 1992-03-25 Akzo N.V. Aqueous pharmaceutical preparation
US5840744A (en) 1988-01-15 1998-11-24 Minnesota Mining And Manufacturing Co. Intravaginal treatment of vaginal infections with buffered metronidazole compositions
US5536743A (en) 1988-01-15 1996-07-16 Curatek Pharmaceuticals Limited Partnership Intravaginal treatment of vaginal infections with buffered metronidazole compositions
WO1989006537A1 (en) 1988-01-15 1989-07-27 Curatek Pharmaceuticals, Inc. Topical metronidazole formulations and therapeutic uses thereof
US5035895A (en) 1988-01-22 1991-07-30 Eisai Co., Ltd. Emulsified and solubilized pharmaceutical preparation
US5719197A (en) 1988-03-04 1998-02-17 Noven Pharmaceuticals, Inc. Compositions and methods for topical administration of pharmaceutically active agents
US4849211A (en) 1988-03-16 1989-07-18 Schrauzer Gerhard N Product and method for the treatment of acne and other skin disorders
US4897262A (en) 1988-03-22 1990-01-30 Playtex Jhirmack, Inc. Non-aerosol hair spray composition
US5385943A (en) 1988-03-30 1995-01-31 Schering Aktiengesellschaft Use of topically applicable preparations for treatment of presbyderma
EP0336812A2 (en) 1988-03-31 1989-10-11 L'oreal Association of pyrimidine derivatives and urea and/or allantoin derivatives to induce and stimulate hair growth and to reduce hair loss
US4992478A (en) 1988-04-04 1991-02-12 Warner-Lambert Company Antiinflammatory skin moisturizing composition and method of preparing same
US4873078A (en) 1988-04-22 1989-10-10 Plough, Inc. High-gloss, high-shine lipstick
US5137714A (en) 1988-05-13 1992-08-11 Unilever Patent Holdings B.V. Anhydrous cosmetic composition comprising stable lower alkyl esters of pyroglutamic acid
US5378730A (en) 1988-06-09 1995-01-03 Alza Corporation Permeation enhancer comprising ethanol and monoglycerides
EP0454102A2 (en) 1988-06-10 1991-10-30 Efamol Holdings Plc Essential fatty acid compositions
US4827378A (en) 1988-06-15 1989-05-02 Rockwell International Corporation Jack coaxial connector EMI shielding apparatus
US5217707A (en) 1988-06-16 1993-06-08 Chinoin Gyogyszer Es Vegyeszeti Termekek Gyara Rt. Pharmaceutical composition and process for the preparation thereof
US4902281A (en) 1988-08-16 1990-02-20 Corus Medical Corporation Fibrinogen dispensing kit
US4950420A (en) 1988-08-31 1990-08-21 Nalco Chemical Company Antifoam/defoamer composition
US4855294A (en) 1988-09-06 1989-08-08 Theratech, Inc. Method for reducing skin irritation associated with drug/penetration enhancer compositions
US4981845A (en) 1988-09-09 1991-01-01 Chesebrough Pond's U.S.A. Co., Division Of Conopco, Inc. Cosmetic composition
KR0143232B1 (en) 1988-10-04 1998-07-15 오오쯔까 아끼히꼬 Preparation for iron supply, preparation for vitamin supply and method for stabilizing a foam preparation
US5135915A (en) 1988-10-14 1992-08-04 Genentech, Inc. Method for the treatment of grafts prior to transplantation using TGF-.beta.
WO1990005774A1 (en) 1988-11-14 1990-05-31 Imaginative Research Associates, Inc. Self-foaming oil compositions and process for making and using same
US5015471A (en) 1988-12-01 1991-05-14 Chesebrough-Pond's Usa Co., Division Of Conopco, Inc. Topical composition
US4970067A (en) 1988-12-12 1990-11-13 Helene Curtis, Inc. Method and composition to condition hair and impart semi-permanent hair set retention properties
US5262407A (en) 1988-12-16 1993-11-16 L'oreal Use of salicylic derivatives for the treatment of skin aging
FR2640942A1 (en) 1988-12-23 1990-06-29 Suchard Sa Jacobs Container of the aerosol type for delivering, in the form of a foam, metered quantities of product, particularly of food product
US5160665A (en) 1988-12-27 1992-11-03 Osaka Aerosol Industries Corporation Aerosol composition exhibiting crackling sound using aliphatic hydrocarbon propellants
JPH02255890A (en) 1988-12-28 1990-10-16 Osaka Aerosol Ind Corp Aerosol composition
US4957732A (en) 1988-12-29 1990-09-18 L'oreal Shaving composition for the skin based on polyorgano-siloxanes containing an acyloxyalkyl group and process for use
JPH02184614A (en) 1989-01-11 1990-07-19 Kobayashi Kose Co Ltd Foamy anhydrous cosmetic
US5171577A (en) 1989-02-09 1992-12-15 L'oreal Process for the preparation of foams which can be used in the cosmetics and pharmaceutical field and foams obtained by this process
US4919934A (en) 1989-03-02 1990-04-24 Richardson-Vicks Inc. Cosmetic sticks
US4996193A (en) 1989-03-03 1991-02-26 The Regents Of The University Of California Combined topical and systemic method of administration of cyclosporine
US5019375A (en) 1989-03-14 1991-05-28 The Procter & Gamble Company Low residue antiperspirant creams
EP0414920A1 (en) 1989-03-17 1991-03-06 Taisho Pharmaceutical Co. Ltd Aerosol preparation for external use
US5221696A (en) 1989-03-29 1993-06-22 Alcon Laboratories, Inc. Use of monoacyl phosphoglycerides to enhance the corneal penetration of ophthalmic drugs
EP0391124B1 (en) 1989-04-05 1995-06-21 Kao Corporation Cosmetic composition of double emulsion type
US5204093A (en) 1989-04-06 1993-04-20 Victor Steven A Shaving cream composition for the treatment of acne vulgaris and pseudofolliculitis barbae and method of producing and using same
US5071648A (en) 1989-04-06 1991-12-10 Merocel Corporation Polymeric broad-spectrum antimicrobial materials
US5767104A (en) 1989-04-20 1998-06-16 Bar-Shalom; Daniel Use of sulfated saccharides to treat baldness
US5221534A (en) 1989-04-26 1993-06-22 Pennzoil Products Company Health and beauty aid compositions
US5082651A (en) 1989-04-26 1992-01-21 Smith Kline & French Laboratories Limited Pharmaceutical compositions
US4874794A (en) 1989-04-28 1989-10-17 Lidak Biopharmaceuticals Inflammatory disease treatment
US5322683A (en) 1989-05-01 1994-06-21 Leonard Mackles Anhydrous aerosol foam
US5002540A (en) 1989-05-22 1991-03-26 Warren Kirschbaum Intravaginal device and method for delivering a medicament
US5071881A (en) 1989-05-23 1991-12-10 Imperial Chemical Industries Plc Co2 blown integral skin foams
EP0404376B1 (en) 1989-06-06 1994-03-23 CURATEK PHARMACEUTICALS Limited Partnership Buffered metronidazole compositions for intravaginal treatment of vaginal infections
US5208031A (en) 1989-06-06 1993-05-04 Kelly Patrick D Sexual lubricants containing zinc as an anti-viral agent
US5122519A (en) 1989-06-27 1992-06-16 American Cyanamid Company Stable, cosmetically acceptable topical gel formulation and method of treatment for acne
US5133972A (en) 1989-07-07 1992-07-28 Ciba-Geigy Corporation Topically administrable pharmaceutical preparations
JPH0350289A (en) 1989-07-17 1991-03-04 Shiseido Co Ltd Non-emulsion type foam aerosol composition
US5560859A (en) 1989-07-26 1996-10-01 Pfizer Inc. Post foaming gel shaving composition
US5352437A (en) 1989-07-28 1994-10-04 Hisamitsu Pharmaceutical Co., Inc. Foamable aerosol preparation
US4981367A (en) 1989-07-28 1991-01-01 Stranco, Inc. Portable mixing apparatus
EP0484530A1 (en) 1989-07-28 1992-05-13 Hisamitsu Pharmaceutical Co., Inc. Foamed aerosol preparation
US5053228A (en) 1989-08-18 1991-10-01 W. R. Grace & Co.-Conn. Polymeric temperature sensitive drug carrier
US5219877A (en) 1989-09-25 1993-06-15 Bristol-Myers Squibb Company Lauryl alcohol as skin penetration enhancer for topical imidazole agents
US5378451A (en) 1989-10-19 1995-01-03 Dow B. Hickam, Inc. Topical medicinal pressurized aerosol compositions and method of preparation, method of use and article of manufacture thereof
US5439670A (en) 1989-11-28 1995-08-08 Riker Laboratories, Inc. Medicinal aerosol formulations
US5508033A (en) 1989-12-06 1996-04-16 Societe D'engrais Composes Mineraux Et Amendments Utilization of algae extract for the preparation of pharmaceutical, cosmetic, food or agricultural compositions
US6796973B1 (en) 1989-12-07 2004-09-28 Instead, Inc. Vaginal discharge collection device and intravaginal drug delivery system
EP0504301B1 (en) 1989-12-07 2004-03-31 Instead, Inc. Method of collecting vaginal discharge
US5422361A (en) 1989-12-20 1995-06-06 Schering Corporation Stable cream and lotion bases for lipophilic drug compositions
US4966779A (en) 1989-12-21 1990-10-30 Basf Corporation Stable, water miscible emulsion comprising a fat-soluble vitamin
US5733572A (en) 1989-12-22 1998-03-31 Imarx Pharmaceutical Corp. Gas and gaseous precursor filled microspheres as topical and subcutaneous delivery vehicles
US4963351A (en) 1989-12-26 1990-10-16 Bhn Associates Shaving aid
US5100917A (en) 1989-12-29 1992-03-31 Merrell Dow Pharmaceuticals Inc. Novel a-nor-steroid-3-carboxylic acid derivatives
US5104645A (en) 1990-02-02 1992-04-14 The Proctor & Gamble Company Antidandruff shampoo compositions
WO1991011991A1 (en) 1990-02-09 1991-08-22 Kabi Pharmacia Ab Foamable composition for pharmaceutical use, use thereof and method of treatment
US5164367A (en) 1990-03-26 1992-11-17 Procyte Corporation Method of using copper(ii) containing compounds to accelerate wound healing
US5130121A (en) 1990-04-17 1992-07-14 Isp Investments Inc. Skin care compositions containing discrete microdroplets of an oil in water stabilized by in situ polymerization of water-soluble vinyl monomer
US5007556A (en) 1990-04-18 1991-04-16 Block Drug Company, Inc. Metering dispenser
US5156765A (en) 1990-05-15 1992-10-20 Fox Valley Systems, Inc. Aerosol foam marking compositions
US5112359A (en) 1990-06-04 1992-05-12 Clairol, Inc. Hair colorants
US5866040A (en) 1990-06-15 1999-02-02 Shiseido Company, Ltd. Complex and emulsified composition
JPH0451958A (en) 1990-06-18 1992-02-20 Mitsubishi Materials Corp Treating agent for circulation type toilet filth
US5034220A (en) 1990-06-20 1991-07-23 Gaf Chemicals Corporation Non-aerosol shaving gel
WO1992000077A1 (en) 1990-06-28 1992-01-09 Medicis Corporation Improved ointment base and method of use
US5449520A (en) 1990-07-27 1995-09-12 Giuliani S.P.A. Pharmaceutical composition for rectal administration of active principles exhibiting a prevalently topical medication action at the colon level
WO1992005142A1 (en) 1990-09-14 1992-04-02 Minnesota Mining And Manufacturing Company Process for preparing tertiary perfluoroamines
US5091111A (en) 1990-09-19 1992-02-25 S. C. Johnson & Son, Inc. Aqueous emulsion and aersol delivery system using same
US5114718A (en) 1990-09-20 1992-05-19 The Procter & Gamble Company Sustained release compositions for treating periodontol disease
WO1992005763A1 (en) 1990-10-04 1992-04-16 Beecham Group Plc Composition containing steroid derivatives
US5286475A (en) 1990-11-09 1994-02-15 L'oreal Anhydrous cosmetic composition in the aerosol form forming a foam
EP0485299A1 (en) 1990-11-09 1992-05-13 L'oreal Aerosol foam anhydrous cosmetic composition
EP0488089A1 (en) 1990-11-30 1992-06-03 Kali-Chemie Pharma GmbH Diclofenac preparations for topical use
US5073371A (en) 1990-11-30 1991-12-17 Richardson-Vicks, Inc. Leave-on facial emulsion compositions
WO1992011839A1 (en) 1991-01-08 1992-07-23 Leonard Mackles Anhydrous aerosol
US6482810B1 (en) 1991-01-15 2002-11-19 Henry Brem Antibiotic composition for inhibition of angiogenesis
US5411992A (en) 1991-01-18 1995-05-02 Clilco Ltd. Lice repellant composition
US5301841A (en) 1991-01-29 1994-04-12 Ing. Erich Pfeiffer Gmbh & Co. Kg Media discharge apparatus for housing a movable reservoir
WO1992013602A1 (en) 1991-02-05 1992-08-20 Buil Juergen Fire extinguishing and protection agent
US6753167B2 (en) 1991-02-22 2004-06-22 Sembiosys Genetics Inc. Preparation of heterologous proteins on oil bodies
US5948682A (en) 1991-02-22 1999-09-07 Sembiosys Genetics Inc. Preparation of heterologous proteins on oil bodies
US5650554A (en) 1991-02-22 1997-07-22 Sembiosys Genetics Inc. Oil-body proteins as carriers of high-value peptides in plants
US5648380A (en) 1991-03-01 1997-07-15 Warner-Lambert Company Anti-inflammatory wound healing compositions and methods for preparing and using same
US5663208A (en) 1991-03-01 1997-09-02 Warner-Lambert Company Antifungal wound healing compositions and methods for preparing and using same
US5658956A (en) 1991-03-01 1997-08-19 Warner-Lambert Company Bioadhesive-wound healing compositions and methods for preparing and using same
US5614171A (en) 1991-03-06 1997-03-25 Domp e Farmaceutici SpA Hydrophilic pharmaceutical composition containing ketoprofen lysine salt for topical use
US5618516A (en) 1991-03-06 1997-04-08 Domp e Farmaceutici SpA Method of reducing subcutaneous inflammation by the topical application of a hydrophilic pharmaceutical composition containing ketoprofen lysine salt
JPH04282311A (en) 1991-03-08 1992-10-07 Koike Kagaku Kk Aerosol-type foamable wound-disinfectant
US5279819A (en) 1991-03-18 1994-01-18 The Gillette Company Shaving compositions
US5482965A (en) 1991-03-19 1996-01-09 Rajadhyaksha; Vithal J. Compositions and method comprising aminoalcohol derivatives as membrane penetration enhancers for physiological active agents
US5389676A (en) 1991-03-22 1995-02-14 E. B. Michaels Research Associates, Inc. Viscous surfactant emulsion compositions
EP0506197B2 (en) 1991-03-25 2001-07-04 Yamanouchi Europe B.V. Topical preparation containing a suspension of solid lipid particles
US5167950A (en) 1991-03-28 1992-12-01 S. C. Johnson & Son High alcohol content aerosol antimicrobial mousse
US5266592A (en) 1991-04-05 1993-11-30 Haarmann & Reimer Gmbh Compositions which have a physiological cooling effect, and active compounds suitable for these compositions
JPH04312521A (en) 1991-04-11 1992-11-04 Okamoto Ind Inc Mousse-like lubricant
US5380761A (en) 1991-04-15 1995-01-10 Chinoin Gyogyszer- Es Vegyeszeti Termekek Gyara Rt. Transdermal compositions
US5369131A (en) 1991-04-24 1994-11-29 Poli Industria Chimica S.P.A. Oral, cutaneous and intravaginal pharmaceutical compositions in the form of foam
US5204090A (en) 1991-05-30 1993-04-20 Bristol Myers Squibb Waterproof high-SPF sunscreen compositions
US5164357A (en) 1991-06-05 1992-11-17 Appleton Papers Inc. Thermally-responsive record material
US5695747A (en) 1991-06-14 1997-12-09 L'oreal Cosmetic composition containing a mixture of metal oxide nanopigments and melanine pigments
US5221530A (en) 1991-06-24 1993-06-22 Helene Curtis, Inc. Mild conditioning shampoo with a high foam level containing an anionic surfactant-cationic acrylate/acrylamide copolymer conditioning agent
CA2114537A1 (en) 1991-07-30 1993-02-18 Jutta Riedl Transdermal therapeutic systems
US5612056A (en) 1991-08-21 1997-03-18 The Secretary Of State For Defence In Her Britannic Majesty's Government Of The United Kingdom Of Gt. Britain & Northern Ireland Transdermal formulations
EP0528190A1 (en) 1991-08-21 1993-02-24 Bruno Jesswein Two-component pressurised container especially for two-component foams
JPH0570340A (en) 1991-09-12 1993-03-23 Kao Corp Anhydrous foam cleaning and wiping agent
US5643600A (en) 1991-09-17 1997-07-01 Micro-Pak, Inc. Lipid vesicles containing avocado oil unsaponifiables
US5700396A (en) 1991-09-27 1997-12-23 Nof Corporation Cosmetic compositions and an emulsion composition
US5589515A (en) 1991-09-27 1996-12-31 Nof Corporation Cosmetic composition and an emulsion composition
EP0535327B1 (en) 1991-10-01 1996-10-23 American Cyanamid Company Pharmaceutical composition containing felbinac
US5230897A (en) 1991-10-31 1993-07-27 G. D. Searle & Co. Transdermal pentamidine
US5236707A (en) 1991-11-08 1993-08-17 Dallas Biotherapeutics, Inc. Stabilization of human interferon
US5439682A (en) 1991-11-22 1995-08-08 Richardson-Vicks Inc. Combined personal cleansing and moisturizing compositions
DE4140474A1 (en) 1991-12-09 1993-06-17 Schuelke & Mayr Gmbh Glycerin monoalkyl ether used as skincare additives in cosmetic compsn. - prevents drying of skin, regulates moisture content and gives pleasant feel
US5294365A (en) 1991-12-12 1994-03-15 Basf Corporation Hydroxypolyethers as low-foam surfactants
US6140355A (en) 1991-12-17 2000-10-31 Alfa Wassermann S.P.A. Pharmaceutical compositions containing rifaximin for treatment of vaginal infections
US5314904A (en) 1991-12-17 1994-05-24 Alfa Wassermann S.P.A. Pharmaceutical compositions containing rifaximin for treatment of vaginal infections
US5252246A (en) 1992-01-10 1993-10-12 Allergan, Inc. Nonirritating nonionic surfactant compositions
EP0552612A2 (en) 1992-01-22 1993-07-28 F. Hoffmann-La Roche Ag Methods for determining and isolating compounds which bind directly to nucleosolic proteins
JPH05213734A (en) 1992-01-31 1993-08-24 Tokushu Aerosol Kk Aerosol massage agent
US5318774A (en) 1992-02-28 1994-06-07 Richardson-Vicks Inc. Composition and method for imparting an artificial tan to human skin
US5792922A (en) 1992-04-02 1998-08-11 Sembiosys Genetics Inc. Oil-body protein cis-elements as regulatory signals
US5344051A (en) 1992-04-27 1994-09-06 Insta-Foam Products, Inc. Two-component foam dispensing apparatus
US5531703A (en) 1992-04-28 1996-07-02 Schering-Plough Healthcare Products, Inc. Applicator for semisolid medications
US5254334A (en) 1992-05-04 1993-10-19 Imaginative Research Associates, Inc. Anhydrous foaming composition containing low concentrations of detergents and high levels of glycerin amd emollients such as oils and esters
EP0569773A2 (en) 1992-05-04 1993-11-18 Imaginative Research Associates Inc. Anhydrous foaming composition containing low concentrations of detergents and high levels of glycerin and emollients such as oils and esters
US5397312A (en) 1992-05-15 1995-03-14 Akzo N.V. Applicator for introducing a cream-type substance into a woman's vagina
US5451404A (en) 1992-05-18 1995-09-19 The Procter & Gamble Company Coolant compositions
US5389305A (en) 1992-06-03 1995-02-14 Colgate Palmolive Co. High foaming nonionic surfactant base liquid detergent
JPH08501529A (en) 1992-06-11 1996-02-20 セラテック・インコーポレイテッド Use of glycerin to alleviate skin-penetrating drug administration
US5346135A (en) 1992-06-16 1994-09-13 Vincent Edward C Spraying apparatus for blending liquids in a gaseous spray system
US5300286A (en) 1992-07-14 1994-04-05 Dow Corning Corporation Silicone emulsion for personal care application
US5614178A (en) 1992-07-28 1997-03-25 The Procter & Gamble Company Compositions for topical delivery of drugs comprising a mixture of high and low HLB surfactants and alkoxylated ether
US5891458A (en) 1992-09-10 1999-04-06 Britton; Peter Bioerodible device for administering active ingredients
US5520918A (en) 1992-09-14 1996-05-28 Mary Kay Cosmetics, Inc. Low irritant skin-cosmetic composition for daily topical use, its application and manufacture
WO1994006440A1 (en) 1992-09-14 1994-03-31 Smith Walter P Skin-conditioning composition, its application and manufacture
JPH06100414A (en) 1992-09-18 1994-04-12 Osaka Aerosol Ind Corp Composition for aerosol
US6096756A (en) 1992-09-21 2000-08-01 Albert Einstein College Of Medicine Of Yeshiva University Method of simultaneously enhancing analgesic potency and attenuating dependence liability caused by morphine and other bimodally-acting opioid agonists
US5589157A (en) 1992-09-29 1996-12-31 Amerchol Corporation Hairsprays and acrylic polymer compositions for use therein
US5719122A (en) 1992-10-20 1998-02-17 Smithkline Beecham Farmaceutici S.P.A. Pharmaceutical compositions containing a calcitonin
US5527534A (en) 1992-10-21 1996-06-18 Gynetech Laboratories, Ltd. Vaginal sponge delivery system
US5645842A (en) 1992-10-31 1997-07-08 Th. Goldschmidt Ag. Cosmetic or pharmaceutical preparations
EP0598412A2 (en) 1992-11-19 1994-05-25 MEDICON GESELLSCHAFT FÜR UNTERNEHMENSBERATUNG IM BEREICH MEDIZIN UND GESUNDHEITSWESEN mbH Skinprotection composition
US5308643A (en) 1992-11-30 1994-05-03 Osipow Lloyd I Self-lather generating shaving compositions
US5399205A (en) 1992-12-22 1995-03-21 Taiho Industries Co., Ltd. Method for cleansing and lustering a surface
JPH06263630A (en) 1993-03-10 1994-09-20 Lion Corp Vitamin as-solubilizing eye drop
US5491245A (en) 1993-03-26 1996-02-13 Th. Goldschmidt Ag Method for the synthesis of amphoteric surfactants
US5693258A (en) 1993-03-30 1997-12-02 Kao Corporation Method for improving foaming properties and foaming composition
US5326557A (en) 1993-04-06 1994-07-05 Dow Corning Corporation Moisturizing compositions containing organosilicon compounds
US5435996A (en) 1993-04-06 1995-07-25 Dow Corning Corporation Moisturizing compositions containing organosilicon compounds
US5807571A (en) 1993-05-06 1998-09-15 Lts Lohmann Therapie-Systeme Gmbh Transdermal therapeutic systems for administering indole serotonin agonists
US5576016A (en) 1993-05-18 1996-11-19 Pharmos Corporation Solid fat nanoemulsions as drug delivery vehicles
US5725874A (en) 1993-05-19 1998-03-10 Hisamitsu Pharmaceutical Co., Inc. Solubilizer and external preparations containing the same
US5514369A (en) 1993-05-21 1996-05-07 Henkel Corporation Mild shampoo composition
JPH06329532A (en) 1993-05-24 1994-11-29 Osaka Zosenjo:Kk Water-in-oil aerosol composition and production process thereof
US5635469A (en) 1993-06-10 1997-06-03 The Procter & Gamble Company Foaming cleansing products
US5447725A (en) 1993-06-11 1995-09-05 The Procter & Gamble Company Methods for aiding periodontal tissue regeneration
US5384308A (en) 1993-06-14 1995-01-24 Henkin; R. I. Composition and method for enhancing wound healing
US5993846A (en) 1993-08-13 1999-11-30 Pharmos Corporation Bioadhesive emulsion preparations for enhanced drug delivery
US5398846A (en) 1993-08-20 1995-03-21 S. C. Johnson & Son, Inc. Assembly for simultaneous dispensing of multiple fluids
US20030194379A1 (en) 1993-08-27 2003-10-16 Francois Brugger Aerosol container and a method for storage and administration of a pre-determined amount of a pharmaceutically active aerosol
US5658575A (en) 1993-09-07 1997-08-19 L'oreal Cosmetic or dermatological composition comprising an oil-in-water emulsion based on oily globules provided with a lamellar liquid crystal coating
US5608119A (en) 1993-09-16 1997-03-04 Takasago International Corporation (2S)-3-[(1R, 2S, 5R)-[5-methyl-2-(1-methylethyl)-cyclohexyl]oxy]-1, 2-propanediol, process for producing the same, and compositions containing the same
US5840771A (en) 1993-10-01 1998-11-24 Legere Pharmaceuticals, Ltd. Prophylaxis against diseases tramsmittable by sexual contact, and therapy of such diseases
US5603940A (en) 1993-10-08 1997-02-18 L'oreal Oil-in-water emulsion which may be used for obtaining a cream
US5578315A (en) 1993-12-01 1996-11-26 Rutgers, The State University Of New Jersey Mucosal adhesive device for long-acting delivery of pharmaceutical combinations in oral cavity
US5725872A (en) 1993-12-14 1998-03-10 Ferring Bv Composition for foams, notably rectal foams, and foams thus obtained
US5686088A (en) 1993-12-23 1997-11-11 The Procter & Gamble Company Antimicrobial wipe compositions
US5527822A (en) 1993-12-29 1996-06-18 Forest Laboratories, Inc. Method of treatment of traumatic brain injury
EP0662431A2 (en) 1994-01-04 1995-07-12 Adolf Würth GmbH & Co. KG Refillable dispensing container, filling device and method of filling the dispensing containers
JPH07215835A (en) 1994-02-03 1995-08-15 Noevir Co Ltd Aerosol foam cosmetic
US6045779A (en) 1994-02-18 2000-04-04 Henkel Kommanditgesellschaft Auf Aktien Skin and hair aerosol foam preparations containing an alkyl polyglycoside and vegetable oil
US5514367A (en) 1994-02-28 1996-05-07 Estee Lauder, Inc. Skin tanning compositions and methods for their preparation and use
US5925669A (en) 1994-03-22 1999-07-20 Molecular/Structural Bio Technologies, Inc. Carrier compositions for anti-neoplastic drugs
EP0676198B1 (en) 1994-04-05 1998-10-07 Agis Industries (1983) Ltd Fungicidal compositions containing a combination of bifonazole and fluocinonide
US5658749A (en) 1994-04-05 1997-08-19 Corning Clinical Laboratories, Inc. Method for processing mycobacteria
US5429815A (en) 1994-04-11 1995-07-04 Chesebrough-Pond's Usa Co., Division Of Conopco, Inc. Stable single-phase self-foaming cleanser
US5792448A (en) 1994-05-05 1998-08-11 L'oreal Use of flavonoids for preserving and/or enhancing the mechanical properties of the hair and process for protecting the hair using these compounds
US5597560A (en) 1994-05-17 1997-01-28 Laboratorios Cusi, S.A. Diclofenac and tobramycin formulations for ophthalmic and otic topicaluse
US5902574A (en) 1994-05-23 1999-05-11 The Gillette Company Shaving preparation for improved shaving comfort
US5545401A (en) 1994-06-02 1996-08-13 Shanbrom; Edward Antiviral, spermicidal vaginal gel and foam containing low molecular weight povidone-iodine
US5605679A (en) 1994-06-03 1997-02-25 L'oreal Photoprotective/cosmetic compositions comprising at least one solid organic sunscreen compound and diphenylacrylate solvent therefor
US6221381B1 (en) 1994-06-28 2001-04-24 The University Of British Columbia Enhancing milk production by adding to feed a nonionic surfactant coated on a carrier
US6165455A (en) 1994-06-30 2000-12-26 The Procter & Gamble Company Personal care compositions containing thermoplastic elastomeric graft copolymers
US5679324A (en) 1994-07-08 1997-10-21 The Procter & Gamble Co. Aerosol foamable fragrance composition
US5611463A (en) 1994-07-12 1997-03-18 Lir France, S.A. Double dispenser for fluid products
CA2154438A1 (en) 1994-07-20 1996-01-21 Jerry Collins Method and composition for treating psoriasis
US5613583A (en) 1994-07-20 1997-03-25 Toyota Jidosha Kabushiki Kaisha Slip control apparatus for motor vehicle lock-up clutch
US5869529A (en) 1994-07-20 1999-02-09 Agis Industries (1983) Ltd. Topical preparation for the prevention and treatment of lesions and sores associated with a herpes virus
US5512555A (en) 1994-07-21 1996-04-30 Merck & Co., Inc. Method of treating sweat-related conditions using finasteride, epristeride and a cholestan-3-one
US5759520A (en) 1994-07-21 1998-06-02 Tillotts Pharma Ag Aqueous foamable composition
US5730964A (en) 1994-07-21 1998-03-24 Merck & Co., Inc. Method of treating sweat-related conditions
WO1996003115A1 (en) 1994-07-21 1996-02-08 Tillotts Pharma Ag Aqueous foamable composition
US5972310A (en) 1994-07-21 1999-10-26 Tillotts Pharma Ag Aqueous foamable composition
JPH0840899A (en) 1994-07-29 1996-02-13 Tokyo Tanabe Co Ltd Aerosol of oxyconazone nitrate
US5773410A (en) 1994-07-29 1998-06-30 Takasago International Corporation Method for purifying (-)-N-isopulegol and citrus perfume composition containing (-)-N-isopulegol obtained by the method
US5613623A (en) 1994-08-09 1997-03-25 Wella Aktiengesellschaft Two-chamber container
US5914310A (en) 1994-08-19 1999-06-22 Rhodia Inc. Amphoteric surfactants having multiple hydrophobic and hydrophilic groups
US5547989A (en) 1994-08-19 1996-08-20 Schering-Plough Healthcare Products, Inc. Compositions for treating corns and calluses
US5753245A (en) 1994-08-26 1998-05-19 The Procter & Gamble Company Personal cleansing compositions
JPH08119831A (en) 1994-08-29 1996-05-14 Osaka Ship Building Co Ltd Foaming aerosol composition
US5854246A (en) 1994-09-01 1998-12-29 Janssen Pharmaceutica, N.V. Topical ketoconazole emulsions
US5976555A (en) 1994-09-07 1999-11-02 Johnson & Johnson Consumer Products, Inc. Topical oil-in-water emulsions containing retinoids
US5683710A (en) 1994-09-14 1997-11-04 Nitto Denko Corporation Percutaneous absorption preparation
US5500211A (en) 1994-09-22 1996-03-19 The Gillette Company Soap-free self-foaming shave gel composition
US5905092A (en) 1994-09-27 1999-05-18 Virotex Corporation Reel/Frame Topical antibiotic composition providing optimal moisture environment for rapid wound healing that reduces skin contraction
US5955414A (en) 1994-10-05 1999-09-21 S. C. Johnson & Son, Inc. Cleaning foam having fluorinated stain repellent and low flammability
US5540853A (en) 1994-10-20 1996-07-30 The Procter & Gamble Company Personal treatment compositions and/or cosmetic compositions containing enduring perfume
EP0738516A1 (en) 1994-11-08 1996-10-23 Mochida Pharmaceutical Co., Ltd. External preparation for skin protection
US5567420A (en) 1994-11-16 1996-10-22 Mceleney; John Lotion which is temporarily colored upon application
US5788664A (en) 1994-11-30 1998-08-04 Scalise; Gaspare Suppository applicator
US6187290B1 (en) 1994-12-06 2001-02-13 Giltech Limited Physiologically acceptable foamable formulation and foam
US5641480A (en) 1994-12-08 1997-06-24 Lever Brothers Company, Division Of Conopco, Inc. Hair care compositions comprising heteroatom containing alkyl aldonamide compounds
JPH08165218A (en) 1994-12-09 1996-06-25 Taiyo Kagaku Co Ltd Cosmetic material
US5529770A (en) 1994-12-09 1996-06-25 West Agro, Inc. Viscous liquid conditioning topical germicides
US5952373A (en) 1994-12-13 1999-09-14 Beiersdorf Ag Agents acting against hyperreactive and hypoactive, deficient skin conditions and manifest dermatitides
US6180662B1 (en) 1994-12-13 2001-01-30 Beiersdorf Ag Agents acting against hyperreactive and hypoactive, deficient skin conditions and manifest dermatitides
US5824650A (en) 1994-12-19 1998-10-20 L'oreal Topical composition containing a substance P antagoinst
US6455076B1 (en) 1994-12-21 2002-09-24 Gary S. Hahn Formulations and methods for reducing skin irritation
WO1996019921A1 (en) 1994-12-23 1996-07-04 Commonwealth Scientific And Industrial Research Organisation Iodine biocidal material
US5914122A (en) 1994-12-27 1999-06-22 Dr. Falk Pharma Gmbh Stable budesonide solutions, method of preparing them and use of these solutions as enema preparations and pharmaceutical foams
USRE38964E1 (en) 1995-01-09 2006-01-31 Becton Dickinson And Company One hand needle release system
US5534261A (en) 1995-01-17 1996-07-09 University Of Southern California Retinoid-based compositions and method for preventing adhesion formation using the same
US6019967A (en) 1995-01-26 2000-02-01 Societe L'oreal S.A. Therapeutic/cosmetic compositions comprising CGRP antagonists for treating sensitive human skin
US5523078A (en) 1995-02-03 1996-06-04 Michael E. Baylin Method of preparing and composition for treatment of hair and scalp
WO1996024325A1 (en) 1995-02-06 1996-08-15 R.P. Scherer Corporation Improved topical application emulsions
US5753241A (en) 1995-02-27 1998-05-19 L'oreal Transparent nanoemulsion less than 100 NM based on fluid non-ionic amphiphilic lipids and use in cosmetic or in dermopharmaceuticals
WO1996026711A1 (en) 1995-02-27 1996-09-06 L'oreal Nitric oxide synthase inhibitors
US7083799B1 (en) 1995-02-27 2006-08-01 L'oreal No-synthase inhibitors
US7078058B2 (en) 1995-03-03 2006-07-18 Connetics Australia Pty Ltd Corticosteroid-containing pharmaceutical composition
JPH11501045A (en) 1995-03-03 1999-01-26 メデヴァ ピーエルシー Corticosteroid-containing drug composition
WO1996027376A1 (en) 1995-03-03 1996-09-12 Medeva Plc Corticosteroid-containing pharmaceutical composition
US6126920A (en) 1995-03-03 2000-10-03 Medeva Europe Plc Method of treating a skin disease with a corticosteroid-containing pharmaceutical composition
US5558872A (en) 1995-03-07 1996-09-24 Healthpoint Medical Limited Partnership Gelled mineral oil skin protectant
US6261544B1 (en) 1995-03-09 2001-07-17 Focal, Inc. Poly(hydroxy acid)/polymer conjugates for skin applications
US5783202A (en) 1995-03-14 1998-07-21 Soltec Research Pty. Ltd. Pediculicidal mousse composition for killing head lice
US6071536A (en) 1995-03-29 2000-06-06 Shionogi & Co., Ltd. Gelatin capsule having adjusted water activity
JPH08277209A (en) 1995-04-07 1996-10-22 Taisho Pharmaceut Co Ltd Revitalizing hair tonic
US5585104A (en) 1995-04-12 1996-12-17 The Procter & Gamble Company Cleansing emulsions
US5733558A (en) 1995-04-20 1998-03-31 L'oreal Method for treatment of acne and/or the effects of ageing using HMG-coenzyme A-reductase inhibitor and compositions for performing the same
US6162834A (en) 1995-04-25 2000-12-19 L'oreal Foaming oil-in-water emulsion based on nonionic surfactants, a fatty phase and a crosslinked cationic or anionic polymer, and its use in topical applications
US5804546A (en) 1995-05-27 1998-09-08 Cussons (International) Limited Cleaning composition
WO1996039119A1 (en) 1995-06-06 1996-12-12 Neutrogena Corporation Topical vehicles containing solubilized and stabilized azelaic acid
US6610315B2 (en) 1995-06-22 2003-08-26 3M Innovative Properties Company Topical application of stable hydroalcoholic compositions for maintaining or improving skin conditions, and delivering fragrance to skin
US5951993A (en) 1995-06-22 1999-09-14 Minnesota Mining And Manufacturing Company Stable hydroalcoholic compositions
US5747049A (en) 1995-07-07 1998-05-05 Shiseido Company, Ltd. Cosmetic composition
US5705472A (en) 1995-07-18 1998-01-06 Petroferm Inc. Neutral aqueous cleaning composition
WO1997003638A1 (en) 1995-07-18 1997-02-06 Pierre Fabre Dermo-Cosmetique Hair care composition containing minoxidil and having a low fatty solvent content
FR2736824A1 (en) 1995-07-18 1997-01-24 Fabre Pierre Dermo Cosmetique MINOXIDIL HAIR COMPOSITION WITH LOW FAT SOLVENT CONTENT
EP0757959A1 (en) 1995-08-08 1997-02-12 Wella Aktiengesellschaft Pressurized gas container for dispensing foam
US6440429B1 (en) 1995-09-06 2002-08-27 Kao Corporation Emulsified, water-in-oil type composition and skin cosmetic preparation
US5817322A (en) 1995-09-14 1998-10-06 Xu; Rongxiang Pharmaceutical base and the use of the same
US5881493A (en) 1995-09-14 1999-03-16 D. B. Smith & Co. Inc. Methods for applying foam
JPH0984855A (en) 1995-09-25 1997-03-31 Kyoto Yakuhin Kogyo Kk Aerosol preparation for administer medicine to rectum or vagina
JPH0999553A (en) 1995-10-09 1997-04-15 Fujitsu Ltd Ink jet head
JPH09110636A (en) 1995-10-16 1997-04-28 Kanebo Ltd Foam cosmetic for skin or hair
US6221823B1 (en) 1995-10-25 2001-04-24 Reckitt Benckiser Inc. Germicidal, acidic hard surface cleaning compositions
US6133327A (en) 1995-12-14 2000-10-17 Taisho Pharmaceutical Co., Ltd. Aerosol preparation
US6030630A (en) 1995-12-29 2000-02-29 Rhodia Chimie Cosmetic compositions for the hair or skin based on sulfone copolyesters with polyorganosiloxane units
US5716611A (en) 1996-01-02 1998-02-10 Euro-Celtique, S.A. Emollient antimicrobial formulations containing povidone iodine
US5889028A (en) 1996-02-09 1999-03-30 Mayo Foundation For Medical Education And Research Colonic delivery of nicotine to treat inflammatory bowel disease
US6024942A (en) 1996-02-09 2000-02-15 The Procter & Gamble Company Photoprotective compositions
USRE38623E1 (en) 1996-02-09 2004-10-12 Topix Pharmaceuticals, Inc. Stabilization of ascorbic acid, ascorbic acid derivatives and/or extracts containing ascorbic acid for topical use
US5846983A (en) 1996-02-09 1998-12-08 Mayo Foundation For Medical Education And Research Colonic delivery of nicotine to treat inflammatory bowel disease
US6299900B1 (en) 1996-02-19 2001-10-09 Monash University Dermal penetration enhancers and drug delivery systems involving same
US5912007A (en) 1996-02-29 1999-06-15 Warner-Lambert Company Delivery system for the localized administration of medicaments to the upper respiratory tract and methods for preparing and using same
US6251369B1 (en) 1996-03-05 2001-06-26 Sultan Dental Products Dental fluoride foam
US6333362B1 (en) 1996-03-07 2001-12-25 L'oreal Pressurized device comprising an ultrafine foaming oil-in-water emulsion and use of this emulsion in cleansing and care of skin
WO1997039745A1 (en) 1996-04-19 1997-10-30 Sloan-Kettering Institute For Cancer Research Use of inhaled retinoids in the prevention of cancer
US5910382A (en) 1996-04-23 1999-06-08 Board Of Regents, University Of Texas Systems Cathode materials for secondary (rechargeable) lithium batteries
US6001341A (en) 1996-05-21 1999-12-14 Condea Augusta S.P.A. Deodorant and/or antiperspirant cosmetic compositions
US5797955A (en) 1996-06-11 1998-08-25 Walters; David J. Pressure application unit for positioning vertebra
US5833961A (en) 1996-06-25 1998-11-10 Inolex Investment Corporation Polyester-based suncreen formulations
US6204285B1 (en) 1996-07-01 2001-03-20 Sepracor Inc. Methods and compositions for treating urinary incontinence using enantiomerically enriched (R,R)-glycopyrrolate
US5716621A (en) 1996-07-03 1998-02-10 Pharmadyn, Inc. Nonocclusive drug delivery device and process for its manufacture
US6090772A (en) 1996-07-10 2000-07-18 Steris Inc Triclosan skin wash with enhanced efficacy
US5833960A (en) 1996-08-02 1998-11-10 Beiersdorf Ag Foaming light protection preparations containing water-soluble light protection filters and surface-active substances
US6042848A (en) 1996-08-15 2000-03-28 The Board Of Trustees Of Southern Illinois University Enhancement of antimicrobial peptide activity by metal ions
EP0824911A2 (en) 1996-08-20 1998-02-25 Bristol-Myers Squibb Company Non-tacky and quick-drying aqueous-based antiperspirant compositions
US5837270A (en) 1996-08-26 1998-11-17 Burgess; Nelson Leon Topical anti-acne composition
EP0829259A1 (en) 1996-09-04 1998-03-18 Warner-Lambert Company Foam/gel with microbeads and/or fine particles
US6271295B1 (en) 1996-09-05 2001-08-07 General Electric Company Emulsions of silicones with non-aqueous hydroxylic solvents
US5952392A (en) 1996-09-17 1999-09-14 Avanir Pharmaceuticals Long-chain alcohols, alkanes, fatty acids and amides in the treatment of burns and viral inhibition
US7060253B1 (en) 1996-09-20 2006-06-13 Mundschenk David D Topical formulations and delivery systems
JPH10114619A (en) 1996-10-14 1998-05-06 L'oreal Sa Self-foaming cream
US6210656B1 (en) 1996-10-14 2001-04-03 L'oreal Self-foaming cream
US6033647A (en) 1996-10-14 2000-03-07 L'oreal Self-foaming cream
WO1998017282A1 (en) 1996-10-23 1998-04-30 Vertex Pharmaceuticals Incorporated Methods of using sucrose octasulfate to treat or prevent enveloped virus infection
US6093408A (en) 1996-10-25 2000-07-25 The Procter & Gamble Company Skin care compositions
WO1998018472A1 (en) 1996-10-31 1998-05-07 Recordati S.A. Chemical And Pharmaceutical Company Antiherpetic pharmaceutical compositions containing acyclovir for topical applicators
WO1998019654A1 (en) 1996-11-04 1998-05-14 The Procter & Gamble Company Hair mousse composition comprising silicone emulsion
US6180669B1 (en) 1996-11-12 2001-01-30 Tamarkin Pharmaceutical Innovation Ltd. Method for treatment of dermatological disorders
US6039936A (en) 1996-11-15 2000-03-21 L'oreal Nanoemulsion based on non-ionic and cationic amphiphilic lipids and uses thereof
US6171347B1 (en) 1996-11-16 2001-01-09 Wella Aktiengesellschaft Compositions, methods and kits for reductively removing color from dyed hair
WO1998021955A1 (en) 1996-11-21 1998-05-28 Colgate-Palmolive Company Foam cleaning compositions
WO1998023291A1 (en) 1996-11-22 1998-06-04 Soltec Research Pty. Ltd. Percutaneous delivery system
US5951544A (en) 1996-12-04 1999-09-14 Laser Industries Ltd. Handpiece assembly for laser apparatus
US5759579A (en) 1996-12-05 1998-06-02 American Home Products Corporation Pharmaceutical suspension systems
US5695551A (en) 1996-12-09 1997-12-09 Dow Corning Corporation Water repellent composition
US5856452A (en) 1996-12-16 1999-01-05 Sembiosys Genetics Inc. Oil bodies and associated proteins as affinity matrices
US5672634A (en) 1996-12-23 1997-09-30 Isp Investments Inc. Crosslinked PVP-I2 foam product
US5879469A (en) 1997-01-06 1999-03-09 Deeay Technologies Ltd. Dishwashing method and detergent composition therefor
US20030215418A1 (en) 1997-01-09 2003-11-20 3M Innovative Properties Company Hydroalcoholic compositions thickened using polymers
WO1998031339A1 (en) 1997-01-17 1998-07-23 Ponsus Pharma Ab. Skin preparation
US5858371A (en) 1997-02-05 1999-01-12 Panacea Biotech Limited Pharmaceutical composition for the control and treatment of anorectal and colonic diseases
US5843411A (en) 1997-02-06 1998-12-01 Topix Pharmaceuticals Inc. Stabilization of ascorbic acid, ascorbic acid derivatives and/or extracts containing ascorbic acid for topical use
US6364854B1 (en) 1997-02-07 2002-04-02 J. Uriach & Cia. S. A. Applicator for semi-solid medications
US6447801B1 (en) 1997-02-11 2002-09-10 Bernard Salafsky Anti-parasitic action of N,N-diethyl-m-toluamide (deet) and formulations that prolong its activity in the skin
US20040028752A1 (en) 1997-02-24 2004-02-12 S.L.A. Pharma Ag. Topical pharmaceutical composition comprising a cholinergic agent or a calcium channel blocker
WO1998036733A2 (en) 1997-02-24 1998-08-27 Michael Albert Kamm Topical pharmaceutical composition comprising a cholinergic agent or a calcium channel blocker
US6433068B1 (en) 1997-03-07 2002-08-13 David S. Morrison Hydrocarbon gels as suspending and dispersing agents and products
US20010054574A1 (en) 1997-03-11 2001-12-27 Roger Navarro Coal tar extract with a reduced content of hydrocarbons and dermatological and cosmetic compositions containing the same
US5922331A (en) 1997-03-26 1999-07-13 Chanel, Inc. Skin cream composition
US5951989A (en) 1997-04-07 1999-09-14 Heymann; Warren R. Method for the treatment of dry skin
WO1998052536A1 (en) 1997-05-23 1998-11-26 The Procter & Gamble Company Skin care compositions
US6183762B1 (en) 1997-05-27 2001-02-06 Sembiosys Genetics Inc. Oil body based personal care products
US6210742B1 (en) 1997-05-27 2001-04-03 Sembiosys Genetics Inc. Uses of oil bodies
US6582710B2 (en) 1997-05-27 2003-06-24 Sembiosys Genetics Inc. Products for topical applications comprising oil bodies
US6146645A (en) 1997-05-27 2000-11-14 Sembiosys Genetics Inc. Uses of oil bodies
US6372234B1 (en) 1997-05-27 2002-04-16 Sembiosys Genetics Inc. Products for topical applications comprising oil bodies
US6596287B2 (en) 1997-05-27 2003-07-22 Semibiosys Genetics Inc. Products for topical applications comprising oil bodies
US6599513B2 (en) 1997-05-27 2003-07-29 Sembiosys Genetics Inc. Products for topical applications comprising oil bodies
JPH10332456A (en) 1997-06-04 1998-12-18 Toyo Gas Meter Kk Attaching tool of transmission device for gas meter
US6217887B1 (en) 1997-06-04 2001-04-17 The Procter & Gamble Company Leave-on antimicrobial compositions which provide improved immediate germ reduction
US6231837B1 (en) 1997-06-06 2001-05-15 Schering-Plough Healthcare Products, Inc. Self-tanning dihydroxyacetone formulations having improved stability and providing enhanced delivery
US20050276836A1 (en) 1997-06-11 2005-12-15 Michelle Wilson Coated vaginal devices for vaginal delivery of therapeutically effective and/or health-promoting agents
EP0993827A1 (en) 1997-06-13 2000-04-19 Taisho Pharmaceutical Co., Ltd Aerosols
US5961998A (en) 1997-07-08 1999-10-05 L'oreal Glossy composition containing aromatic oils thickened by a polysaccharide ether
WO1999008649A2 (en) 1997-08-18 1999-02-25 Neubourg, Stephanie Foaming skin cream
US6423323B2 (en) 1997-08-18 2002-07-23 Stephanie Neubourg Foam skin cream, uses of the foam skin protection cream and a process for its preparation
US20060018938A1 (en) 1997-08-18 2006-01-26 Stephanie Neubourg Foam skin cream, use of the foam skin protection cream and a process of its preparation
US6258374B1 (en) 1997-09-08 2001-07-10 Astra Aktiebolag Foam-forming pharmaceutical composition
US5885581A (en) 1997-09-11 1999-03-23 Merz, Incorporated Composition and method for improvement of the appearance of scars
US6241971B1 (en) 1997-09-25 2001-06-05 The Procter & Gamble Company Hair styling compositions comprising mineral salt, lipophilic material, and low levels of surfactant
US5939376A (en) 1997-09-25 1999-08-17 Colgate Palmolive Company Liquid cleaning compositions containing an organic ester foam control agent
US6214318B1 (en) 1997-10-02 2001-04-10 Oms Holdings Llc Aerosol ointment compositions for topical use
US6075056A (en) 1997-10-03 2000-06-13 Penederm, Inc. Antifungal/steroid topical compositions
US6116466A (en) 1997-10-03 2000-09-12 L'oreal S.A. Two-product dispensing unit
WO1999020250A1 (en) 1997-10-17 1999-04-29 Soltec Research Pty. Ltd. Topical antifungal composition
US5961957A (en) 1997-10-20 1999-10-05 Mcanalley; Bill H. Foam compositions
US5911981A (en) 1997-10-24 1999-06-15 R.I.T.A. Corporation Surfactant blends for generating a stable wet foam
US5865347A (en) 1997-10-27 1999-02-02 William T. Wilkinson Multi-chamber dispenser for flowable materials
US5959161A (en) 1997-10-28 1999-09-28 Takasago International Corporation Method for producing para-menthane-3,8-diol
US6294550B1 (en) 1997-10-28 2001-09-25 Asivi, Llc Treatment of female sexual dysfunction
US6306841B1 (en) 1997-10-28 2001-10-23 Asivi, Llc Treatment of female sexual dysfunction
US5877216A (en) 1997-10-28 1999-03-02 Vivus, Incorporated Treatment of female sexual dysfunction
US6319913B1 (en) 1997-11-10 2001-11-20 Cellegy Pharmaceuticals, Inc. Penetration enhancing and irritation reducing systems
US6006948A (en) 1997-11-17 1999-12-28 Raimund Andris Gmbh & Co. Kg Two-chamber metering dispenser
US5849042A (en) 1997-11-19 1998-12-15 Bristol-Myers Squibb Hair dye compositions containing 2,3 dialkyl-4-aminophenol and a 2-alkyl-1-naphthol
US5871720A (en) 1997-11-20 1999-02-16 Colgate-Palmolive Company Cosmetic compositions with DBS and functionalized silicones
US6358924B1 (en) 1997-12-05 2002-03-19 Eli Lilly And Company GLP-1 formulations
EP0928608B1 (en) 1997-12-25 2006-03-08 Ajinomoto Co., Inc. Cosmetic composition
WO1999037282A2 (en) 1998-01-22 1999-07-29 Beiersdorf Ag Reduced lipid flowable cosmetic or dermatological preparations
FR2774595A1 (en) 1998-02-06 1999-08-13 Rech D Innovation Et De Dev Ce EMULSION FOR TRANSDERMAL STEROID ADMINISTRATION
US7235251B2 (en) 1998-02-13 2007-06-26 Beiersdorf Ag Cosmetic or dermatological oil/water emulsions with reduced lipid content
US6110966A (en) 1998-02-20 2000-08-29 Medi-Cell Laboratories, Inc. Triple action complex
US20020013481A1 (en) 1998-02-24 2002-01-31 Uwe Schonrock Use of flavones flavanones and flavonoids for protecting ascorbic acid and/or ascorbyl compounds from oxidation
US6017912A (en) 1998-02-27 2000-01-25 Bussell; Letantia Topical fluoroquinolone antibiotics in an alcohol and acetone vehicle
JPH11250543A (en) 1998-02-27 1999-09-17 Teac Corp Record medium recording/reproducing device
JP2000017174A (en) 1998-03-03 2000-01-18 General Electric Co <Ge> Emulsion of silicone and non-aqueous hydroxyl solvent
EP0979654A1 (en) 1998-03-04 2000-02-16 Teijin Limited Activated vitamin d 3? emulsion-type lotions
US6352727B1 (en) 1998-03-12 2002-03-05 Oji Paper Co., Ltd. Bactericides
US6121210A (en) 1998-03-12 2000-09-19 Dap Products Inc. Foamable silicone oil compositions and methods of use thereof
US5990100A (en) 1998-03-24 1999-11-23 Panda Pharmaceuticals, L.L.C. Composition and method for treatment of psoriasis
WO1999053923A1 (en) 1998-04-22 1999-10-28 Soltec Research Pty. Ltd. Pharmaceutical composition
US6946120B2 (en) 1998-04-22 2005-09-20 Connetics Australia Pty. Ltd. Pharmaceutical composition
US5919830A (en) 1998-04-30 1999-07-06 Gopalkrishnan; Sridhar Stable non-aqueous blends for personal care compositions
US20020090386A1 (en) 1998-05-04 2002-07-11 Haslwanter Joseph A. Skin barrier composition
GB2337461A (en) 1998-05-22 1999-11-24 Hewlett Healthcare Limited Formulations for topicval administration
US6060041A (en) 1998-06-15 2000-05-09 L'oreal Photoprotective cosmetic compositions containing a metal oxide nanopigment and an acrylic terpolymer, and use of these compositions for protecting keratinous material against ultraviolet radiation
US6706290B1 (en) 1998-07-06 2004-03-16 Olvai E. Kajander Methods for eradication of nanobacteria
US6375936B1 (en) 1998-07-09 2002-04-23 L'oreal Photoprotective cosmetic composition containing an anionic surfactant, compounds for screening out ultraviolet radiation and a cationic or zwitterionic amphiphilic compound, and use thereof
US6146664A (en) 1998-07-10 2000-11-14 Shaklee Corporation Stable topical ascorbic acid compositions
US6451777B1 (en) 1998-07-17 2002-09-17 The University Of Texas Southwestern Medical Center Method for regulating hair growth
US6071541A (en) 1998-07-31 2000-06-06 Murad; Howard Pharmaceutical compositions and methods for managing skin conditions
US6328982B1 (en) 1998-08-04 2001-12-11 Takasago International Corporation Cool feeling composition
US6620773B1 (en) 1998-08-04 2003-09-16 Johnson & Johnson Gmbh Foaming oil preparation and its use
WO2000009082A1 (en) 1998-08-14 2000-02-24 Unilever Plc Cosmetic composition
US6958154B2 (en) 1998-08-20 2005-10-25 3M Innovative Properties Company Spray on bandage and drug delivery system
JP2000080017A (en) 1998-09-02 2000-03-21 Kanebo Ltd Aerosol composition
US20060292080A1 (en) 1998-09-11 2006-12-28 Connetics Australia Pty Ltd Vitamin formulation
US20040184992A1 (en) 1998-09-11 2004-09-23 Connetics Australia Pty Ltd Mousse composition
US7029659B2 (en) 1998-09-11 2006-04-18 Connetics Australia Pty Ltd. Mousse composition
WO2000015193A1 (en) 1998-09-11 2000-03-23 Soltec Research Pty Ltd Mousse composition
JP2002524490A (en) 1998-09-11 2002-08-06 ソルテック リサーチ プロプライアタリィ リミティド Moose composition
US6730288B1 (en) 1998-09-11 2004-05-04 Connetics Australia Pty Ltd Mousse composition
US6087310A (en) 1998-09-23 2000-07-11 Castrol Limited Skin cleaning compositions and uses comprising a polymer latex emulsion
US6232315B1 (en) 1998-09-28 2001-05-15 Merck & Co., Inc. Method for treating inflammatory diseases by administering a thrombin inhibitor
US6914057B1 (en) 1998-09-28 2005-07-05 The Research Foundation Of State University Of New York Inhibitor of cataract formation
US6607716B1 (en) 1998-09-29 2003-08-19 Tech Labs, Inc. Pediculicidal compositions, a kit, and methods of use
US6189810B1 (en) 1998-10-07 2001-02-20 Sergei Alexeevich Nerushai Method for aerosol spraying liquid perfume products
US6287546B1 (en) 1998-10-09 2001-09-11 Colgate-Palmolive Company Shampoos with stabilizers
WO2000023051A1 (en) 1998-10-19 2000-04-27 Oms Holdings, Llc Aerosol ointment compositions and method of manufacture
JP2000128734A (en) 1998-10-22 2000-05-09 Toyo Aerosol Ind Co Ltd Aerosol composition for forming foam
US6110477A (en) 1998-10-30 2000-08-29 Topix Pharmaceuticals Inc. Stabilization of ascorbic acid, ascorbic acid derivatives and/or extracts containing ascorbic acid for topical use
US6811767B1 (en) 1998-11-12 2004-11-02 Elan Pharma International Limited Liquid droplet aerosols of nanoparticulate drugs
US5980904A (en) 1998-11-18 1999-11-09 Amway Corporation Skin whitening composition containing bearberry extract and a reducing agent
US6344218B1 (en) 1998-11-23 2002-02-05 The Procter & Gamble Company Skin deodorizing and santizing compositions
US6328950B1 (en) 1998-11-28 2001-12-11 Wella Aktiengesellschaft Pigment-containing foamable gel and device producing a foam from said gel
US20010006654A1 (en) 1998-12-09 2001-07-05 L'oreal Compositions and methods for treating hair and skin using aqueous delivery systems
WO2000033825A2 (en) 1998-12-10 2000-06-15 Nexmed Holdings, Inc. Compositions and methods for amelioration of human female sexual dysfunction
US6087317A (en) 1998-12-10 2000-07-11 Dow Corning Corporation Particle size stable silicone emulsions
US20010027218A1 (en) 1998-12-16 2001-10-04 3M Innovative Properties Company Aqueous foaming compositions, foam compoitions, and preparation of foam compositions
US6335022B1 (en) 1998-12-17 2002-01-01 L'oreal Nanoemulsion based on oxyethylenated or non-oxyethylenated sorbitan fatty esters, and its uses in the cosmetics, dermatological and/or ophthalmological fields
US6274150B1 (en) 1998-12-23 2001-08-14 L'oreal Nanoemulsion based on phosphoric acid fatty acid esters and its uses in the cosmetics, dermatological, pharmaceutical, and/or ophthalmological fields
WO2000038731A1 (en) 1998-12-28 2000-07-06 Taisho Pharmaceutical Co.,Ltd. External preparation
JP2000191429A (en) 1998-12-28 2000-07-11 Kao Corp Foamable cosmetic
US6375960B1 (en) 1998-12-29 2002-04-23 L'oreal Nanoemulsion based on ethoxylated fatty ethers or on ethoxylated fatty esters and its uses in the cosmetics, dermatological and/or ophthalmological fields
US20020015721A1 (en) 1999-01-05 2002-02-07 Jean-Thierry Simonnet Nanoemulsion based on ethylene oxide and propylene oxide block copolymers and its uses in the cosmetics, dermatological and/or ophthalmological fields
US6270781B1 (en) 1999-01-08 2001-08-07 Maxim Pharmaceuticals, Inc. Method and compositions for topical treatment of damaged tissue using reactive oxygen metabolite production or release inhibitors
US6486168B1 (en) 1999-01-08 2002-11-26 3M Innovative Properties Company Formulations and methods for treatment of mucosal associated conditions with an immune response modifier
US6672483B1 (en) 1999-02-05 2004-01-06 Rexam Sofab Dispenser for chemically unstable products
FR2789371A1 (en) 1999-02-05 2000-08-11 Sofab DISTRIBUTOR OF CHEMICALLY UNSTABLE PRODUCTS
EP1025836A1 (en) 1999-02-08 2000-08-09 F. Hoffmann-La Roche Ag Cosmetic light screening composition
US6433033B1 (en) 1999-02-10 2002-08-13 Mitsui Chemicals, Inc. High-durability flexible polyurethane cold cure molded foam and process for producing the same
US6423329B1 (en) 1999-02-12 2002-07-23 The Procter & Gamble Company Skin sanitizing compositions
US6224888B1 (en) 1999-02-12 2001-05-01 The Procter & Gamble Company Cosmetic compositions
JP2000239140A (en) 1999-02-17 2000-09-05 Yakult Honsha Co Ltd Preparation for external use for skin
US6305578B1 (en) 1999-02-26 2001-10-23 Wella Aktiengesellshaft Device for mixing, foaming and dispensing liquids from separate compressed-gas containers
DE10009233A1 (en) 1999-02-26 2000-08-31 Wella Ag Pressurized gas container appliance used for application of foam products for hair treatment includes connecting channels and mixing chamber with small cross sectional area so that products flowing through them remain in fluid phase
US20030077297A1 (en) 1999-02-26 2003-04-24 Feng-Jing Chen Pharmaceutical formulations and systems for improved absorption and multistage release of active agents
US6544530B1 (en) 1999-03-22 2003-04-08 J.P.M.E.D. Ltd. Stable oil-in-glycerin emulsion
US6214788B1 (en) 1999-03-31 2001-04-10 Firmenich Sa Use of cubebol as a flavoring ingredient
US6383471B1 (en) 1999-04-06 2002-05-07 Lipocine, Inc. Compositions and methods for improved delivery of ionizable hydrophobic therapeutic agents
US6264964B1 (en) 1999-04-14 2001-07-24 Conopco, Inc. Foaming cosmetic products
WO2000061076A1 (en) 1999-04-14 2000-10-19 Unilever Plc Foaming cosmetic products
WO2000062776A1 (en) 1999-04-16 2000-10-26 Fujisawa Pharmaceutical Co., Ltd. Antifungal compositions
US6479532B1 (en) 1999-04-16 2002-11-12 Fujisawa Pharmaceutical Co., Ltd. Antifungal compositions
US6284802B1 (en) 1999-04-19 2001-09-04 The Procter & Gamble Company Methods for regulating the condition of mammalian keratinous tissue
US6433003B1 (en) 1999-04-23 2002-08-13 Arthur M. Bobrove Method for treating hyperhidrosis in mammals
US6753013B1 (en) 1999-04-23 2004-06-22 Leo Pharmaceutical Products, Ltd. A/S Pharmaceutical composition
US6395258B1 (en) 1999-04-27 2002-05-28 Unilever Home & Personal Care Usa A Division Of Conopco, Inc. Mousse forming hair treatment composition containing n-methyl alkyl glucamide surfactant
FR2793479A1 (en) 1999-05-10 2000-11-17 Lir France Sa Double dispenser for liquid or paste cosmetic products has casing containing two reservoirs each surmounted by dispensing pump with pushbuttons connected to mixing chamber discharging through single dispensing orifice
US20020143188A1 (en) 1999-05-12 2002-10-03 Garvey David S. Nitrosated and nitrosylated potassium channel activators, compositions and methods of use
US6168576B1 (en) 1999-05-24 2001-01-02 Irene N. Reynolds Device for dispensing vaginal medication
EP1055425A2 (en) 1999-05-27 2000-11-29 Bristol-Myers Squibb Company Ultra-mild, clear, aqueous, foamable skin cleanser
US6395300B1 (en) 1999-05-27 2002-05-28 Acusphere, Inc. Porous drug matrices and methods of manufacture thereof
WO2000072805A1 (en) 1999-05-28 2000-12-07 Unilever Plc Foamable shower oil composition
JP2000351726A (en) 1999-06-08 2000-12-19 Lion Corp Aerosol preparation
JP2000354623A (en) 1999-06-14 2000-12-26 Shiigeru Kk Deodorant and deodorizing spray
US6113888A (en) 1999-06-15 2000-09-05 Neutrogena Corporation Self-tanning mousse
WO2000076461A2 (en) 1999-06-15 2000-12-21 Unilever Plc Mousse-forming shampoo compositions
US6190365B1 (en) 1999-06-21 2001-02-20 Chun Lim Abbott Vaginal douche applicator and method of vaginal deodorization using the same
KR20010003063A (en) 1999-06-21 2001-01-15 민경윤 Dermal emulsion composition comprising minoxidil
JP2001002526A (en) 1999-06-23 2001-01-09 Koike Kagaku Kk Foam aerosol composition
US6524594B1 (en) 1999-06-23 2003-02-25 Johnson & Johnson Consumer Companies, Inc. Foaming oil gel compositions
US6536629B2 (en) 1999-06-23 2003-03-25 Airspray N.V. Aerosol for dispensing a liquid
US6551604B1 (en) 1999-06-28 2003-04-22 The Procter & Gamble Company Skin care compositions
US20020032171A1 (en) 1999-06-30 2002-03-14 Feng-Jing Chen Clear oil-containing pharmaceutical compositions containing a therapeutic agent
US20020035046A1 (en) 1999-07-01 2002-03-21 Lukenbach Elvin R. Personal care compositions
US6762158B2 (en) 1999-07-01 2004-07-13 Johnson & Johnson Consumer Companies, Inc. Personal care compositions comprising liquid ester mixtures
WO2001001949A1 (en) 1999-07-01 2001-01-11 Johnson And Johnson Consumer Companies, Inc. Cleansing compositions
US20030031693A1 (en) 1999-07-02 2003-02-13 Lionel Breton Hydroxystilbene/ascorbic acid compositions for treating skin afflictions
US6753000B2 (en) 1999-07-02 2004-06-22 L'oreal Hydroxystilbene/ascorbic acid compositions for treating skin afflictions
JP2001019606A (en) 1999-07-06 2001-01-23 Pola Chem Ind Inc Warmth sensory pack
WO2001005366A1 (en) 1999-07-15 2001-01-25 Playtex Products, Inc. Sunscreen aerosol composition
US6548074B1 (en) 1999-07-22 2003-04-15 Elizabeth Arden Co., Division Of Conopco, Inc. Silicone elastomer emulsions stabilized with pentylene glycol
US7195135B1 (en) 1999-07-29 2007-03-27 Valois S.A.S Dispenser having a hinged dispensing head
WO2001008681A1 (en) 1999-08-02 2001-02-08 First Horizon Pharmaceutical Corporation Methods of administration of glycopyrrolate compositions
WO2001010961A1 (en) 1999-08-04 2001-02-15 Napier International Technologies Inc. Aerosol formulations
US6511655B1 (en) 1999-08-16 2003-01-28 Beiersdorf Ag Cosmetic or dermatological preparations of the oil-in-water type
US20010033838A1 (en) 1999-08-26 2001-10-25 Sean Farmer Use of emu oil and its various fractions as a carrier for antifungal, antibacterial, and antiviral medications & preperations
US6777591B1 (en) 1999-08-27 2004-08-17 Sembiosys Genetics Inc. Legume-like storage protein promoter isolated from flax and methods of expressing proteins in plant seeds using the promoter
US6479058B1 (en) 1999-09-02 2002-11-12 Mccadden Michael E. Composition for the topical treatment of poison ivy and other forms of contact dermatitis
US6308863B1 (en) 1999-09-02 2001-10-30 Owens-Brockway Plastic Products Inc. Dual chamber package for pressurized products
JP2001072963A (en) 1999-09-03 2001-03-21 Daizo:Kk Water-in-oil type bubblelike aerosol composition and preparation thereof
US20030006193A1 (en) 1999-09-06 2003-01-09 Katsunori Ikeda Apparatus for purifying nucleic acids and proteins
US6986883B2 (en) 1999-09-09 2006-01-17 Discus Dental, Inc. Increased peroxide content tooth bleaching gel
US6283336B1 (en) 1999-09-20 2001-09-04 The Procter & Gamble Company Article for the delivery of foam products
US6437006B1 (en) 1999-09-27 2002-08-20 American Cyanamid Company Pharmaceutical carrier formulation
US20020004063A1 (en) 1999-09-28 2002-01-10 Jie Zhang Methods and apparatus for drug delivery involving phase changing formulations
US6534455B1 (en) 1999-09-29 2003-03-18 L'oreal Composition for washing keratin materials, based on a detergent surfactant, a dialkyldiallylammonium homopolymer and an acrylic terpolymer
US20020039591A1 (en) 1999-10-01 2002-04-04 Joseph Scott Dahle Topical applications for skin treatment
US6790435B1 (en) 1999-10-01 2004-09-14 Unilever Home & Personal Care Usa Division Of Conopco, Inc. Antiperspirant compositions comprising microemulsions
US6562355B1 (en) 1999-10-08 2003-05-13 Societe L'oreal S.A. Comixture of dextran sulfate/escin for treating skin redness/edema and/or sensitive skin
US6186367B1 (en) 1999-10-19 2001-02-13 Valley Design Inc. Metered liquid squeeze dispenser
US6403061B1 (en) 1999-10-22 2002-06-11 Societe L'oreal UV-photoprotecting W/O emulsions comprising micronized insoluble screening agents & nonscreening oxyalkylenated silicones
US6080394A (en) 1999-11-08 2000-06-27 Dow Corning Corporation Polar solvent-in-oil emulsions and multiple emulsions
US20030077301A1 (en) 1999-12-16 2003-04-24 Maibach Howard I. Topical pharmaceutical composition for the treatment of inflammatory dermatoses
UA66796C2 (en) 1999-12-27 2004-06-15 Univ Nat Pharmaceutical Composition "profesol foamy" for treating radiation lesions of skin
NZ520014A (en) 2000-01-10 2005-05-27 Foamix Ltd Pharmaceutical and cosmetic carrier or composition for topical application
US6911211B2 (en) 2000-01-10 2005-06-28 Foamix Ltd. Pharmaceutical and cosmetic carrier or composition for topical application
AU782515B2 (en) 2000-01-10 2005-08-04 Foamix Pharmaceuticals Ltd Pharmaceutical and cosmetic carrier or composition for topical application
US6967023B1 (en) 2000-01-10 2005-11-22 Foamix, Ltd. Pharmaceutical and cosmetic carrier or composition for topical application
US7682623B2 (en) 2000-01-10 2010-03-23 Foamix Ltd. Pharmaceutical composition for topical application
US6348229B1 (en) 2000-01-10 2002-02-19 Thixo Ltd. Food comprising thixotropic composition of unsaturated fat and process for manufacture thereof
US6994863B2 (en) 2000-01-10 2006-02-07 Foamix Ltd. Pharmaceutical and cosmetic carrier and composition for topical application
WO2001053198A1 (en) 2000-01-18 2001-07-26 Valence Technology, Inc. Preparation of lithium-containing materials
WO2001054212A1 (en) 2000-01-18 2001-07-26 Valence Technology, Inc. Lithium-based electrochemically active materials and preparation thereof
US20020098215A1 (en) 2000-01-21 2002-07-25 Veronique Douin Nanoemulsions comprising at least one amphiphilic lipid, at least one oil, and at least one nonionic polymer, and uses thereof
US20010036450A1 (en) 2000-01-21 2001-11-01 Claude Verite Nanoemulsions comprising at least one amphiphilic lipid, at least one oil, and at least one poly ethylene glycol (PEG) ester, and uses thereof
WO2001054679A2 (en) 2000-01-27 2001-08-02 Children's Hospital Research Foundation Transdermal composition containing an anesthetic and a vasodilator agent
US20010027981A1 (en) 2000-02-04 2001-10-11 Jean-Pierre Yquel Dispenser for selectively dispensing separately stored components
US6890567B2 (en) 2000-02-04 2005-05-10 Takasago International Corporation Sensate composition imparting initial sensation upon contact
US20030118527A1 (en) 2000-02-15 2003-06-26 Dija Zeist B.V. Tanning preparation for the skin
US20040161447A1 (en) 2000-02-17 2004-08-19 Leonard Paul Liquid foam producing compositions and dispensing system therefor
US20070271235A1 (en) 2000-02-22 2007-11-22 Metacarta, Inc. Geotext Searching and Displaying Results
EP1189579B1 (en) 2000-02-22 2004-09-08 Color Access, Inc. Gelled aqueous cosmetic compositions
WO2001062209A2 (en) 2000-02-25 2001-08-30 Henkel Kommanditgesellschaft Auf Aktien Dental cleaning agents containing propellant gas
US6355230B2 (en) 2000-02-25 2002-03-12 Beiersdorf Ag Cosmetic and dermatological light protection formulations with a content of benzotriazole derivatives and alkyl naphthalates
US20020048798A1 (en) 2000-03-15 2002-04-25 Avery Mitchell Allen Novel antioxidants
WO2001070242A2 (en) 2000-03-22 2001-09-27 Ben Gurion University Of The Negev Research And Development Authority Compositions containing molecular iodine
US6341717B2 (en) 2000-04-01 2002-01-29 Megaplast Gmbh & Co. Kg Metering pump dispenser with at least two metering pumps
US6649571B1 (en) 2000-04-04 2003-11-18 Masi Technologies, L.L.C. Method of generating gas bubbles in oleaginous liquids
WO2001076579A1 (en) 2000-04-06 2001-10-18 Perricone Nicholas V Treatment of skin damage using olive oil polyphenols
US6774114B2 (en) 2000-04-10 2004-08-10 L'oreal Topical application of immixture of ascorbic acid + ascorbic acid compounds for augmenting the synthesis of epidermal ceramides
US7758888B2 (en) 2000-04-21 2010-07-20 Sol-Gel Technologies Ltd. Composition exhibiting enhanced formulation stability and delivery of topical active ingredients
JP2002012513A (en) 2000-04-24 2002-01-15 Kanebo Ltd Urea-containing whipped cosmetic
WO2001082880A2 (en) 2000-05-03 2001-11-08 Goodman David S Topical preparation for the treatment of hair loss
US6358541B1 (en) 2000-05-03 2002-03-19 David S. Goodman Topical preparation for the treatment of hair loss
US6410036B1 (en) 2000-05-04 2002-06-25 E-L Management Corp. Eutectic mixtures in cosmetic compositions
WO2001082890A1 (en) 2000-05-04 2001-11-08 E-L Management Corporation Eutectic mixtures in cosmetic compositions
WO2001085102A2 (en) 2000-05-05 2001-11-15 R.P. Scherer Technologies, Inc. Oil-in-water emulsion formulation containing hydroquinone and retinol
WO2001085128A2 (en) 2000-05-08 2001-11-15 Pfizer Products Inc. Skin protectant spray compositions
US20050266035A1 (en) 2000-05-08 2005-12-01 Pfizer Inc. Skin protectant spray compositions
US6433024B1 (en) 2000-05-08 2002-08-13 Karl F. Popp Topical anti-acne composition
US20070071688A1 (en) 2000-05-12 2007-03-29 Sanofi-Aventis Pharmaceutical compositions for transdermal administration of anti-inflammatory agents
US20020044659A1 (en) 2000-05-15 2002-04-18 Nec Corporation Broadcast verification system, broadcast verification method, broadcast verification apparatus and storage medium storing broadcast verification program
US20030206955A1 (en) 2000-05-22 2003-11-06 L'oreal Nanoemulsions, compositions comprising such nanoemulsions, and methods of using such nanoemulsions
US6566350B2 (en) 2000-05-23 2003-05-20 Showa Yakuhin Kako Co., Ltd. Minocycline-containing compositions
US6956062B2 (en) 2000-06-09 2005-10-18 Air Liquide Santé (International) Storage-stable compositions of glycerol monoalkyl ethers
WO2001095728A1 (en) 2000-06-13 2001-12-20 Fd Management, Inc. Cosmetic composition for stressed skin under extreme conditions
WO2002000820A1 (en) 2000-06-23 2002-01-03 Combe International Ltd. Stable foam for use in disposable wipe
US8512718B2 (en) 2000-07-03 2013-08-20 Foamix Ltd. Pharmaceutical composition for topical application
US20020035087A1 (en) 2000-07-06 2002-03-21 Barclay Barry J. B complex vitamin compositions that protect against cellular damage caused by ultraviolet light
US20020031478A1 (en) 2000-07-08 2002-03-14 Walter Keller Clear, two-phase, foam-forming aerosol hair care procuct
US6589509B2 (en) 2000-07-08 2003-07-08 Wella Ag Clear, two-phase, foam-forming aerosol hair care product
US20020035182A1 (en) 2000-07-13 2002-03-21 L'oreal Nanoemulsion containing nonionic polymers, and its uses
US6468989B1 (en) 2000-07-13 2002-10-22 Dow Pharmaceutical Sciences Gel compositions containing metronidazole
US20020072544A1 (en) 2000-07-21 2002-06-13 Clariant Gmbh Fine emulsions
US20020035070A1 (en) 2000-07-26 2002-03-21 The Procter & Gamble Company Method of regulating hair growth using metal complexes of oxidized carbohydrates
WO2002007685A2 (en) 2000-07-26 2002-01-31 The Procter & Gamble Company Method of regulating hair growth using metal complexes of oxidized carbohydrates
US20020045659A1 (en) 2000-07-28 2002-04-18 Michelet Jean Francois Use, in cosmetic preparations, of prostaglandin EP-3 receptor agonists to attenuate, reduce or stop the growth of head hair and other hairs
JP2002047136A (en) 2000-08-02 2002-02-12 Pola Chem Ind Inc Exothermic foam cosmetic
US6514487B1 (en) 2000-08-08 2003-02-04 Teresa Leigh Barr Foam and gel oat protein complex and method of use
WO2002015873A2 (en) 2000-08-22 2002-02-28 The Procter & Gamble Company Personal care compositions containing adhesive elastomeric polymer and inorganic colloid
US6299023B1 (en) 2000-08-24 2001-10-09 Miles Arnone Device for dispensing two substances in a user selectable ratio with replaceable cartridges
WO2002015860A1 (en) 2000-08-24 2002-02-28 Tim Ioannides Topical antioxidant having vitamin c and method of combination with topical agent by user
US20020058010A1 (en) 2000-08-31 2002-05-16 L'oreal Foaming cosmetic cream for treating greasy skin and methods for using the same
US20060110418A1 (en) 2000-09-14 2006-05-25 Nanocluster Technologies, Llc Water-in-oil emulsions and methods
US20030185861A1 (en) 2000-09-21 2003-10-02 Seiichi Hori Suppository of retaining in lower region of rectum
WO2002024161A1 (en) 2000-09-21 2002-03-28 Taisho Pharmaceutical Co., Ltd. Suppositories sustained in the lower rectum
WO2002028435A1 (en) 2000-10-02 2002-04-11 Soltec Research Pty Ltd. Pharmaceutical vehicle
US6582679B2 (en) 2000-10-04 2003-06-24 Wella Ag Hair wax products containing waxes, non-volatile oils and volatile hydrophobic materials
FR2814959A1 (en) 2000-10-09 2002-04-12 Menarini France Atomiser for pharmaceutical products based on antiinflammatory agents comprises pressurized container, dosing pouch and metering valve
US6547063B1 (en) 2000-10-10 2003-04-15 The Procter & Gamble Company Article for the delivery of foam products
GB2367809A (en) 2000-10-12 2002-04-17 Bespak Plc Metering valve with collapsible chamber
US20020117516A1 (en) 2000-10-20 2002-08-29 L'oreal Dispenser unit for simultaneously dispensing the contents of two containers
US6403069B1 (en) 2000-10-20 2002-06-11 Colgate-Palmolive Company High oil clear emulsion with elastomer
US20040018228A1 (en) 2000-11-06 2004-01-29 Afmedica, Inc. Compositions and methods for reducing scar tissue formation
US20040076651A1 (en) 2000-11-24 2004-04-22 Werner Brocks Cosmetic or dermatological agent in the form of a creamy permanent mousse or a stable foamed cream
WO2002041847A1 (en) 2000-11-24 2002-05-30 Wella Aktiengesellschaft Cosmetic or dermatological agent in the form of a creamy permanent mousse or a stable foamed cream
US6299032B1 (en) 2000-11-27 2001-10-09 George W. Hamilton Disposable actuator with cap opener for aerosol cans
US6969521B1 (en) 2000-11-28 2005-11-29 Avon Products, Inc. Aerosol insect repellent composition having low VOC content and method of applying same to the skin
WO2002043490A1 (en) 2000-11-28 2002-06-06 Avon Products, Inc. Foaming insect repellent compositions
US20050013853A1 (en) 2000-11-29 2005-01-20 Irit Gil-Ad Anti-proliferative drugs
US20020111281A1 (en) 2000-12-06 2002-08-15 Mohan Vishnupad Anhydrous creams, lotions and gels
US7002486B2 (en) 2000-12-11 2006-02-21 Lawrence Malcolm G Highway vehicular traffic flow control
EP1215258A2 (en) 2000-12-12 2002-06-19 Takasago International Corporation Waming composition for food and drink or for oral care preparation
US20060254597A1 (en) 2000-12-14 2006-11-16 40J's Llc Method of treatment of atrophic vaginitis by topical clitoral menthol or a related cooling compound
US20020182234A1 (en) 2000-12-19 2002-12-05 Beiersdorf Aktiengesellschaft Self-foaming or foam-like preparations
US20020136755A1 (en) 2000-12-22 2002-09-26 Tyrrell David John Absorbent articles with non-aqueous compositions containing botanicals
US20040079361A1 (en) 2001-01-17 2004-04-29 Clayton Colin D. Medicinal aerosols
US6902737B2 (en) 2001-01-18 2005-06-07 L'oreal Translucent nanoemulsion, production method, and uses thereof in the cosmetic, dermatological and/or ophthalmological fields
US20030013692A1 (en) 2001-01-19 2003-01-16 Gullans Steven R. Methods of treating neurological disorders
WO2002062324A2 (en) 2001-02-05 2002-08-15 Michael Albert Kamm A treatment of oesophageal motility disorders and gastro-oesophageal reflux disease
US6682750B2 (en) 2001-03-03 2004-01-27 Clariant Gmbh Surfactant-free cosmetic, dermatological and pharmaceutical compositions
US20020198136A1 (en) 2001-03-06 2002-12-26 Cellegy Pharmaceuticals, Inc. Compounds and methods for the treatment of urogenital disorders
US6488947B1 (en) 2001-03-07 2002-12-03 The Procter & Gamble Company Topical composition comprising a functional aromatic derivative cosmetic bonding agent
US20020134376A1 (en) 2001-03-26 2002-09-26 3M Innovative Properties Company Metering valve for a metered dose inhaler having improved flow
US20020165170A1 (en) 2001-03-26 2002-11-07 Wilson S. Brian Method of attenuating reactions to skin irritants
US6951654B2 (en) 2001-03-27 2005-10-04 Galen (Chemicals) Limited Intravaginal drug delivery devices for the administration of an antimicrobial agent
WO2002078667A1 (en) 2001-03-29 2002-10-10 The Dial Corporation Antibacterial compositions for skin care
JP2002302419A (en) 2001-03-30 2002-10-18 Aldeep Cosmetics Japan Inc Cosmetic composition
US20110262542A1 (en) 2001-04-05 2011-10-27 Galderma Laboratories Inc. Controlled Delivery of Tetracycline Compounds and Tetracycline Derivatives
US20020153390A1 (en) 2001-04-18 2002-10-24 Vlodek James A. Methods and apparatus for extruding foam through orifices
US6682726B2 (en) 2001-04-30 2004-01-27 The Gillette Company Self-foaming shaving lotion
WO2002087519A2 (en) 2001-04-30 2002-11-07 The Gillette Company Shaving compositions containing highly lubricious water soluble polymers
US20020187181A1 (en) 2001-05-14 2002-12-12 3M Innovative Properties Company System for delivering cosmetics and pharmaceuticals
US20040127554A1 (en) 2001-05-17 2004-07-01 Carlo Ghisalberti Dermatological and cosmetic compositions
US20030017181A1 (en) 2001-05-31 2003-01-23 Rood Gloria A. Dermatological compositions and methods
US7270828B2 (en) 2001-06-20 2007-09-18 The Procter & Gamble Company Personal care composition comprising hydrophobic gel
WO2003000223A1 (en) 2001-06-20 2003-01-03 The Procter & Gamble Company Personal care composition comprising polyol-in-silicone emulsion
US20040234475A1 (en) 2001-06-22 2004-11-25 Helene Lannibois-Drean Oil-in-oil emulsions comprising a silicone, dispersions and use of said emulsions
US6544562B2 (en) 2001-06-25 2003-04-08 Blistex Inc. Acne treatment including dual-package system
US6428772B1 (en) 2001-06-25 2002-08-06 Blistex Inc. Acne treatment composition with cooling effect
WO2003002082A1 (en) 2001-06-26 2003-01-09 The Procter & Gamble Company Pressurized anhydrous antiperspirant emulsions
JP2003012511A (en) 2001-06-27 2003-01-15 Rohto Pharmaceut Co Ltd Aerosol composition
US6834778B2 (en) 2001-06-27 2004-12-28 Kanebo, Limited Mixing and discharge device
WO2003005985A1 (en) 2001-07-13 2003-01-23 The Procter & Gamble Company Mousse forming compositions comprising quaternary ammonium agents
US20030053961A1 (en) 2001-07-13 2003-03-20 Eccard Wayne Ellis Mousse forming compositions comprising quaternary ammonium agents
US20150141381A1 (en) 2001-07-13 2015-05-21 Paratek Pharmaceuticals, Inc. Tetracycline compounds having target therapeutic activities
US20040197295A1 (en) 2001-07-17 2004-10-07 Beiersdorf Ag Foamable preparations
US7960416B2 (en) 2001-08-03 2011-06-14 Takeda Pharmaceutical Company Limited Stable emulsion composition
DE10138495A1 (en) 2001-08-04 2003-02-27 Beiersdorf Ag Self-foaming cosmetic or dermatological composition comprises a fatty acid, an ethoxylated fatty acid, a fatty alcohol, lipids and an aliphatic hydrocarbon propellant
US20040219176A1 (en) 2001-08-08 2004-11-04 Dominguez Maria Antonia Garcia Injectables in foam. new pharmaceutical applications
JP2003055146A (en) 2001-08-09 2003-02-26 Pola Chem Ind Inc Cosmetic for massage having cool down effect
US20030114520A1 (en) 2001-08-09 2003-06-19 Croda, Inc. Anti-irritants
WO2003013984A1 (en) 2001-08-11 2003-02-20 Aventis Pharma Limited Pressurised aerosol dispenser
WO2003015699A2 (en) 2001-08-17 2003-02-27 Epicept Corporation Topical compositions and methods for treating pain
US6638981B2 (en) 2001-08-17 2003-10-28 Epicept Corporation Topical compositions and methods for treating pain
EP1287813A1 (en) 2001-08-28 2003-03-05 Coty Inc. Antiperspirant deodorant emulsion
US20050054991A1 (en) 2001-08-29 2005-03-10 Tobyn Michael John Topical administration device
US6709663B2 (en) 2001-08-31 2004-03-23 Healthpoint, Ltd. Multivesicular emulsion drug delivery systems
US6479060B1 (en) 2001-09-04 2002-11-12 Healthpoint, Ltd. Elegant hydrogenated castor oil ointments
US20030078172A1 (en) 2001-09-20 2003-04-24 L'oreal Foaming cosmetic cream
US20040247531A1 (en) 2001-09-27 2004-12-09 Beiersdorf Ag Self-foaming, foam-like, after-foaming or foamable cosmetic or dermatological preparations containing waxes or lipids that are solid or semi-solid at room temperature
US20080058055A1 (en) 2001-09-28 2008-03-06 Igt Game development architecture that decouples the game logic from the graphics logic
US20030185839A1 (en) 2001-10-05 2003-10-02 Podolsky Daniel K. Methods and compositions for treating dermal lesions
US20030148949A1 (en) 2001-10-05 2003-08-07 Podolsky Daniel K. Methods and compositions for treating dermal lesions
US6649574B2 (en) 2001-10-10 2003-11-18 Exxonmobil Research And Engineering Company Biodegradable non-toxic gear oil
US20040197276A1 (en) 2001-10-26 2004-10-07 Yoshihiko Takase Composition for oily foamable aerosol
EP1438946A1 (en) 2001-10-26 2004-07-21 Taiyo Kagaku Co., Ltd. Composition for oily foamable aerosol
US20030082120A1 (en) 2001-10-26 2003-05-01 Milstein Harold J. Method for reducing systemic effects of aging, effects of aging on the skin, and incidence of skin damage from sun exposure using antibiotics of the tetracycline family
US20030108502A1 (en) 2001-10-30 2003-06-12 The Procter & Gamble Company Anhydrous cosmetic compositions containing polyols
EP1308169A1 (en) 2001-11-06 2003-05-07 Merz Pharma GmbH & Co.KGaA Reservoir composition for the topical application of sparingly soluble drugs, their production and use
US20040258627A1 (en) 2001-11-09 2004-12-23 Beiersdorf Ag Self-foaming, foam-like, after-foaming or foamable cosmetic or dermatological preparation
US20030175232A1 (en) 2001-11-13 2003-09-18 The Procter & Gamble Company Compositions containing enzymes stabilized with certain osmo-protectants and methods for using such compositions in personal care
US20040258628A1 (en) 2001-11-14 2004-12-23 Beiersdorf Ag Self-foaming, foam-type, post-foaming or foamable cosmetic or dermatological preparations containing siloxane elastomers
US6955816B2 (en) 2001-11-16 2005-10-18 Klysz Beatrice M Anti-aging skin care composition and uses thereof
US6946139B2 (en) 2001-11-30 2005-09-20 Clariant Gmbh Methods for producing foam from multiphase compositions
US20040105825A1 (en) 2001-11-30 2004-06-03 Clariant Gmbh Methods for producing foam from multiphase compositions
FR2833246A1 (en) 2001-12-06 2003-06-13 Beatrice France Touteau Device for activating two aerosols simultaneously comprises sleeve into which two opposite aerosols, provided with simultaneous diffuser, are introduced, sleeve closed by filler cap with pushbutton
US6531118B1 (en) 2001-12-11 2003-03-11 Avon Products, Inc. Topical compositions with a reversible photochromic ingredient
WO2003051294A2 (en) 2001-12-18 2003-06-26 Medicis Pharmaceutical Corporation Mitocidal compositions and methods
WO2003053292A1 (en) 2001-12-20 2003-07-03 Femmepharma, Inc. Vaginal delivery of drugs
US6765001B2 (en) 2001-12-21 2004-07-20 Medicis Pharmaceutical Corporation Compositions and methods for enhancing corticosteroid delivery
WO2003055454A1 (en) 2001-12-21 2003-07-10 Ponsus Pharma Ab New composition
US20030118515A1 (en) 2001-12-21 2003-06-26 Robert Jew Cosmetic composition containing carbon dioxide
US20030130247A1 (en) 2001-12-21 2003-07-10 Medicis Pharmaceutical Corporation Compositions and methods for enhancing corticosteroid delivery
WO2003055445A2 (en) 2001-12-21 2003-07-10 Medicis Pharmaceutical Corporation Compositions and methods for enhancing corticosteriod delivery
US20030129259A1 (en) 2001-12-28 2003-07-10 Avon Products, Inc. Topical lightening compostitions and methods of use
US7014844B2 (en) 2001-12-28 2006-03-21 Avon Products, Inc. Lightening compositions and methods of use
US20030175315A1 (en) 2002-01-05 2003-09-18 Yoo Byung Hee Nanoemulsion comprising metabolites of ginseng saponin as an active component and a method for preparing the same, and a skin-care composition for anti-aging containing the same
US20040058878A1 (en) 2002-01-18 2004-03-25 Walker Edward B. Antimicrobial and sporicidal composition
US20030195128A1 (en) 2002-01-31 2003-10-16 Deckman Douglas E. Lubricating oil compositions
US20050245902A1 (en) 2002-02-08 2005-11-03 Brian Cornish Substance delivery device
EP1475381A1 (en) 2002-02-14 2004-11-10 Quimversion, S.L. Aluminium and hexamethylenetetramine complex and the applications thereof
EP1483001B1 (en) 2002-02-20 2007-11-07 Abbott Research Group, Inc. Vaginal douches and vaginal douche applicators
WO2003070301A1 (en) 2002-02-20 2003-08-28 Abbott Research Group, Inc. Vaginal douches, vaginal douche applicators and methods of vaginal douching
WO2003071995A1 (en) 2002-02-21 2003-09-04 Besoyan Robert W Brief protector
US20080015263A1 (en) 2002-02-27 2008-01-17 Bolotin Elijah M Compositions for delivery of therapeutics and other materials
US6691898B2 (en) 2002-02-27 2004-02-17 Fomo Products, Inc. Push button foam dispensing device
WO2003075851A2 (en) 2002-03-06 2003-09-18 Cellegy Pharmaceuticals, Inc. Compositions and methods for the treatment of anorectal disorders
US20050281766A1 (en) 2002-03-11 2005-12-22 Avon Products, Inc. Method of improving the aesthetic appearance of epithelia
US6736860B2 (en) 2002-03-12 2004-05-18 Unilever Home & Personal Care Usa Division Of Conopco, Inc. Gradual permanent coloring of hair using dye intermediates dissolved in alkaline water with fatty alcohol
CA2422244A1 (en) 2002-03-14 2003-09-14 Homax Products, Inc. Aerosol systems and methods for mixing and dispensing two-part materials
US20030180347A1 (en) 2002-03-19 2003-09-25 W.F. Young, Incorporated Patch for the delivery of topical agents
US7654415B2 (en) 2002-03-19 2010-02-02 Airspray International B.V. Dispensing unit
EP1500385A1 (en) 2002-03-28 2005-01-26 Hakuto Co., Ltd Method of foam stabilization for foam cosmetic
US20040078896A1 (en) 2002-04-12 2004-04-29 Dreamwell, Ltd. Cassette bedding system
US8846039B2 (en) 2002-04-26 2014-09-30 Asan Laboratories Company (Cayman), Limited Method for ameliorating pruritus
US6875438B2 (en) 2002-04-27 2005-04-05 Aventis Pharma Deutschland Gmbh Preparations for topical administration of substances having antiandrogenic activity
WO2003092641A1 (en) 2002-05-03 2003-11-13 Purepharm Inc. Topical glycopyrrolate product
US20050153943A1 (en) 2002-05-06 2005-07-14 Ashley Robert A. Methods of simultaneously treating mucositis and fungal infection
WO2003094873A1 (en) 2002-05-10 2003-11-20 Unilever Plc Hair conditioning compositions
WO2003097002A1 (en) 2002-05-15 2003-11-27 The Procter & Gamble Company Underarm product in a metered-dose package
US20030215472A1 (en) 2002-05-16 2003-11-20 Bonda Craig A Methods and compositions employing a dialkyl amide
US20050164993A1 (en) 2002-05-20 2005-07-28 Ashley Robert A. Methods of treating allergic reactions
EP1375386A1 (en) 2002-05-28 2004-01-02 Mitani Valve Co Dispensing apparatus with metering chamber and aerosol type dispenser therewith
US6723309B1 (en) 2002-06-10 2004-04-20 Jeffrey Alan Deane Hair cleansing conditioner
US20040038912A1 (en) 2002-06-13 2004-02-26 Jean-Francois Michelet Derivative of glucose and of vitamin F, compositions comprising it, uses and preparation process
FR2840903A1 (en) 2002-06-13 2003-12-19 Oreal Glucose fatty acid esters active in preventing hair loss and aiding hair regrowth
US20030235597A1 (en) 2002-06-19 2003-12-25 Withiam Michael C. Cosmetic compositions comprising calcium silicates
US20060054634A1 (en) 2002-06-26 2006-03-16 Satoshi Mekata Packaging container for discharge of plurality of contents, packaging product including the packaging container and process for producing the packaging product
US7455195B2 (en) 2002-06-26 2008-11-25 Daizo Co., Ltd. Container for discharging plural contents, a dispenser using the container, and a process for producing the dispenser
WO2004003284A1 (en) 2002-06-27 2004-01-08 Asahi Fiber Glass Company, Limited Collecting agent for glass fiber yarn and glass fiber yarn using the same
US20040002550A1 (en) 2002-06-28 2004-01-01 Mercurio Anthony Fred Post foaming compositions
JP2004047136A (en) 2002-07-08 2004-02-12 Furukawa Electric Co Ltd:The Assembly system of wire harness
US20060165616A1 (en) 2002-07-22 2006-07-27 Michael Brock Microemulsion containing anti-uv filters and/or anti-dandruff agents
US7137536B2 (en) 2002-07-22 2006-11-21 Seaquist Perfect Dispensing Foreign, Inc. Inverted aerosol dispenser
US6897195B2 (en) 2002-07-24 2005-05-24 Nanjing Zhongshi Chemical Co. Composition of menthol and menthyl lactate, its preparation method and its applications as a cooling agent
US20020182162A1 (en) 2002-08-07 2002-12-05 Mohsen Shahinpoor Nitric oxide (NO) donor+cGMP-PDE5 inhibitor as a topical drug for enhanced hair growth
FR2843373A1 (en) 2002-08-12 2004-02-13 Jean Augustin Container and applicator for for fluid product e.g. for hair care has inflatable chambers with movable spikes to pierce them
US20080193762A1 (en) 2002-08-15 2008-08-14 The Rockefeller University Water soluble metal and semiconductor nanoparticle complexes
WO2004017962A2 (en) 2002-08-26 2004-03-04 S.L.A. Pharma Ag Tropical formulation comprising at least 5% of metronidazole in white petrolatum and its use in the anal and rectal region
US20040053797A1 (en) 2002-09-12 2004-03-18 Unilever Home & Personal Products Usa, Division Of Conopco, Inc. Viscoelastic cleansing gel with micellar surfactant solutions
US7021499B2 (en) 2002-09-13 2006-04-04 Bissell Homecare, Inc. Aerosol package
US20040067970A1 (en) 2002-09-18 2004-04-08 Unilever Home & Personal Care Usa, Division Of Conopco, Inc. Novel compounds and their uses
US6968982B1 (en) 2002-09-18 2005-11-29 Burns Caleb E S Multiple-mist dispenser
US20040063787A1 (en) 2002-09-19 2004-04-01 Villanueva Julie M. Vaginal health products
US20040072638A1 (en) 2002-09-27 2004-04-15 Enos Richard A. Quick-release fastener for releasably attaching lacrosse stick head to shaft
US20040106688A1 (en) 2002-09-30 2004-06-03 Kao Corporation Foamable oil-in-water type emulsion
FR2845672A1 (en) 2002-10-09 2004-04-16 Airlessystems Fluid dispenser comprises two distinct dispensing units received and held in common external shell, each reservoir defining opening, dispensing part and fixing for dispensing part on opening
US7497354B2 (en) 2002-10-09 2009-03-03 Airlessystems Fluid dispenser
WO2004037197A2 (en) 2002-10-24 2004-05-06 Goldstein Jay A Antifungal formulations
US20040138179A1 (en) 2002-10-24 2004-07-15 Goldstein Jay A. Antifungal formulations
US20080138293A1 (en) 2002-10-24 2008-06-12 Foamix Ltd Cosmetic and pharmaceutical foam
US20130189196A1 (en) 2002-10-25 2013-07-25 Foamix Ltd. Foamable Composition
US20080031907A1 (en) 2002-10-25 2008-02-07 Foamix Ltd. Cosmetic and pharmaceutical foam
US8722021B2 (en) 2002-10-25 2014-05-13 Foamix Ltd. Foamable carriers
US20050186142A1 (en) 2002-10-25 2005-08-25 Foamix Ltd. Kit and composition of imidazole with enhanced bioavailability
US20140182585A1 (en) 2002-10-25 2014-07-03 Foamix Ltd. Aerosol container for foamable compositions
US20140086848A1 (en) 2002-10-25 2014-03-27 Foamix Ltd. Foamable compositions and methods for disorders of the skin or mucosal surfaces
US8840869B2 (en) 2002-10-25 2014-09-23 Foamix Ltd. Body cavity foams
WO2004037225A2 (en) 2002-10-25 2004-05-06 Foamix Ltd. Cosmetic and pharmaceutical foam
US8900554B2 (en) 2002-10-25 2014-12-02 Foamix Pharmaceuticals Ltd. Foamable composition and uses thereof
US20050205086A1 (en) 2002-10-25 2005-09-22 Foamix Ltd. Retinoid immunomodulating kit and composition and uses thereof
US20130295022A1 (en) 2002-10-25 2013-11-07 Foamix Ltd. Moisturizing Foam Containing Lanolin
US20150025060A1 (en) 2002-10-25 2015-01-22 Foamix Pharmaceuticals Ltd. Foamable Compositions and Kits Comprising One or More of a Channel Agent, a Cholinergic Agent, A nitric Oxide Donor and Related Agents and Their Uses
US20150098907A1 (en) 2002-10-25 2015-04-09 Foamix Pharmaceuticals Ltd. Foamable composition and uses thereof
CA2502986A1 (en) 2002-10-25 2004-05-06 Foamix Ltd. Cosmetic and pharmaceutical foam
US20150157586A1 (en) 2002-10-25 2015-06-11 Foamix Pharmaceuticals Ltd. Penetrating pharmaceutical foam
US20070020213A1 (en) 2002-10-25 2007-01-25 Foamix Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US20050232869A1 (en) 2002-10-25 2005-10-20 Foamix Ltd. Nonsteroidal immunomodulating kit and composition and uses thereof
US20130189195A1 (en) 2002-10-25 2013-07-25 Foamix Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US20070020304A1 (en) 2002-10-25 2007-01-25 Foamix Ltd. Non-flammable insecticide composition and uses thereof
US8486376B2 (en) 2002-10-25 2013-07-16 Foamix Ltd. Moisturizing foam containing lanolin
NZ540166A (en) 2002-10-25 2007-06-29 Foamix Ltd Cosmetic and pharmaceutical foam
US8435498B2 (en) 2002-10-25 2013-05-07 Foamix Ltd. Penetrating pharmaceutical foam
US20070292359A1 (en) 2002-10-25 2007-12-20 Foamix Ltd. Polypropylene glycol foamable vehicle and pharmaceutical compositions thereof
US9265725B2 (en) 2002-10-25 2016-02-23 Foamix Pharmaceuticals Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US9320705B2 (en) 2002-10-25 2016-04-26 Foamix Pharmaceuticals Ltd. Sensation modifying topical composition foam
US20120237453A1 (en) 2002-10-25 2012-09-20 Foamix Ltd. Sensation modifying topical composition foam
US20160158261A1 (en) 2002-10-25 2016-06-09 Foamix Pharmaceuticals Ltd. Antibiotic Kit and Composition and Uses Thereof
US9492412B2 (en) 2002-10-25 2016-11-15 Foamix Pharmaceuticals Ltd. Penetrating pharmaceutical foam
US20160354473A1 (en) 2002-10-25 2016-12-08 Foamix Pharmaceuticals Ltd. Cosmetic and Pharmaceutical Foam
US20120156144A1 (en) 2002-10-25 2012-06-21 Foamix Foamable Compositions, Kits and Methods for Hyperhidrosis
US20120148503A1 (en) 2002-10-25 2012-06-14 Dov Tamarkin Non-flammable insecticide composition and uses thereof
US20070292355A1 (en) 2002-10-25 2007-12-20 Foamix Ltd. Anti-infection augmentation foamable compositions and kit and uses thereof
US20050271596A1 (en) 2002-10-25 2005-12-08 Foamix Ltd. Vasoactive kit and composition and uses thereof
US9539208B2 (en) 2002-10-25 2017-01-10 Foamix Pharmaceuticals Ltd. Foam prepared from nanoemulsions and uses
US9622947B2 (en) 2002-10-25 2017-04-18 Foamix Pharmaceuticals Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US20170119665A1 (en) 2002-10-25 2017-05-04 Foamix Pharmaceuticals Ltd. Penetrating pharmaceutical foam
US20060233721A1 (en) 2002-10-25 2006-10-19 Foamix Ltd. Foam containing unique oil globules
US20080044444A1 (en) 2002-10-25 2008-02-21 Foamix Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US8119109B2 (en) 2002-10-25 2012-02-21 Foamix Ltd. Foamable compositions, kits and methods for hyperhidrosis
US8119150B2 (en) 2002-10-25 2012-02-21 Foamix Ltd. Non-flammable insecticide composition and uses thereof
US20060193789A1 (en) 2002-10-25 2006-08-31 Foamix Ltd. Film forming foamable composition
US9668972B2 (en) 2002-10-25 2017-06-06 Foamix Pharmaceuticals Ltd. Nonsteroidal immunomodulating kit and composition and uses thereof
US20080138296A1 (en) 2002-10-25 2008-06-12 Foamix Ltd. Foam prepared from nanoemulsions and uses
US20170172857A1 (en) 2002-10-25 2017-06-22 Foamix Pharmaceuticals Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US9713643B2 (en) 2002-10-25 2017-07-25 Foamix Pharmaceuticals Ltd. Foamable carriers
US20170231909A1 (en) 2002-10-25 2017-08-17 Foamix Pharmaceuticals Ltd. Foam prepared from nanoemulsions and uses
US20170274084A1 (en) 2002-10-25 2017-09-28 Foamix Pharmaceuticals Ltd. Body Cavity Foams
US20060018937A1 (en) 2002-10-25 2006-01-26 Foamix Ltd. Steroid kit and foamable composition and uses thereof
US20060140984A1 (en) 2002-10-25 2006-06-29 Foamix Ltd. Cosmetic and pharmaceutical foam
US20170354597A1 (en) 2002-10-25 2017-12-14 Foamix Pharmaceuticals Ltd. Nonsteroidal immunomodulating kit and composition and uses thereof
US20180214558A1 (en) 2002-10-25 2018-08-02 Foamix Pharmaceuticals Ltd. Cosmetic and pharmaceutical foam
US10117812B2 (en) 2002-10-25 2018-11-06 Foamix Pharmaceuticals Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US20080206161A1 (en) 2002-10-25 2008-08-28 Dov Tamarkin Quiescent foamable compositions, steroids, kits and uses thereof
US20190022001A1 (en) 2002-10-25 2019-01-24 Foamix Pharmaceuticals Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US20190022000A1 (en) 2002-10-25 2019-01-24 Foamix Pharmaceuticals Ltd. Anti-infection augmentation foamable compositions and kit and uses thereof
US20080253973A1 (en) 2002-10-25 2008-10-16 Foamix Ltd. Sensation modifying topical composition foam
US8741265B2 (en) 2002-10-25 2014-06-03 Foamix Ltd. Penetrating pharmaceutical foam
US20080317679A1 (en) 2002-10-25 2008-12-25 Foamix Ltd. Foamable compositions and kits comprising one or more of a channel agent, a cholinergic agent, a nitric oxide donor, and related agents and their uses
US7700076B2 (en) 2002-10-25 2010-04-20 Foamix, Ltd. Penetrating pharmaceutical foam
US10322085B2 (en) 2002-10-25 2019-06-18 Foamix Pharmaceuticals Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
US20190076356A1 (en) 2002-10-25 2019-03-14 Foamix Pharmaceuticals Ltd. Dicarboxylic Acid Foamable Vehicle and Pharmaceutical Compositions Thereof
US20190029958A1 (en) 2002-10-25 2019-01-31 Foamix Pharmaceuticals Ltd. Cosmetic and pharmaceutical foam
US20190076451A1 (en) 2002-10-25 2019-03-14 Foamix Pharmaceuticals Ltd. Antibiotic Kit and Composition and Uses Thereof
US20190076339A1 (en) 2002-10-25 2019-03-14 Foamix Pharmaceuticals Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
US20060051301A1 (en) 2002-10-28 2006-03-09 Givaudan Sa Coolant solutions and compositions comprising the same
JP2004250435A (en) 2002-11-21 2004-09-09 Dai Ichi Seiyaku Co Ltd Composition for hair growth
US9211259B2 (en) 2002-11-29 2015-12-15 Foamix Pharmaceuticals Ltd. Antibiotic kit and composition and uses thereof
US20060269485A1 (en) 2002-11-29 2006-11-30 Foamix Ltd. Antibiotic kit and composition and uses thereof
US20060239937A2 (en) 2002-12-12 2006-10-26 Neubourg Skin Care Gmbh And Co Kg Stable foam cream
US20060099151A1 (en) 2002-12-12 2006-05-11 Fritz Neubourg Stable foam cream
EP1428521A2 (en) 2002-12-13 2004-06-16 Unilever Plc Antiperspirant or deodorant composition
US20040191196A1 (en) 2002-12-16 2004-09-30 Dov Tamarkin Novel conjugate compounds and dermatological compositions thereof
US20040120917A1 (en) 2002-12-18 2004-06-24 Coletica Cosmetic or dermopharmaceutical composition comprising an enzyme which is insoluble in an aqueous medium, as well as its uses
US7842791B2 (en) 2002-12-19 2010-11-30 Nancy Jean Britten Dispersible pharmaceutical compositions
FR2848998A1 (en) 2002-12-20 2004-06-25 Oreal Dispenser for two fluid products in variable proportions has two containers with separate pumps, push-button with outlet valve and regulator
US20040229813A1 (en) 2003-01-02 2004-11-18 Femme Pharma, Inc. Pharmaceutical preparations for treatments of diseases and disorders of the breast
WO2004064769A2 (en) 2003-01-21 2004-08-05 Hector Herrera Methods for making and using topical delivery agents
WO2004064833A1 (en) 2003-01-24 2004-08-05 Connetics Australia Pty Ltd. Clindamycin phosphate foam
US20040151671A1 (en) 2003-01-24 2004-08-05 Connetics Australia Pty Ltd. Pharmaceutical foam
US20040151756A1 (en) 2003-02-04 2004-08-05 Richards Anthony P. Edible low density high surface area drug vehicle, method of manufacturing low density high surface area drug vehicle
US20060204446A1 (en) 2003-02-06 2006-09-14 Cipla Ltd Topical immunotherapy and compositions for use therein
WO2004071479A1 (en) 2003-02-12 2004-08-26 Connetics Australia Pty Ltd Film foaming hydroalcoholic foam
US6841547B2 (en) 2003-02-28 2005-01-11 Albert Einstein College Of Medicine Of Yeshevia University Method for decreasing low density lipoprotein
WO2004078158A2 (en) 2003-03-04 2004-09-16 The Procter & Gamble Company Regulation of mammalian keratinous tissue using hexamidine compositions
WO2004078896A1 (en) 2003-03-05 2004-09-16 Unilever Plc Method of treating a textile using a colour changing foam
US20040198706A1 (en) 2003-03-11 2004-10-07 Carrara Dario Norberto R. Methods and formulations for transdermal or transmucosal application of active agents
US6843390B1 (en) 2003-03-17 2005-01-18 Joe G. Bristor Multiple fluid closed system dispensing device
US20040185123A1 (en) 2003-03-21 2004-09-23 Mazzio Elizabeth A. Topical treatment for dyshidrosis (pompholyx) and dry skin disorders
US20060263323A1 (en) 2003-03-24 2006-11-23 Becton, Dickinson And Company Invisible antimicrobial glove and hand antiseptic
US20040192754A1 (en) 2003-03-24 2004-09-30 Shapira Nathan Andrew Methods for treating idiopathic hyperhidrosis and associated conditions
US20040195276A1 (en) 2003-04-03 2004-10-07 Karl-Heinz Fuchs Discharge device for at least one medium
US20040258643A1 (en) 2003-04-14 2004-12-23 Najem Yaqub Cleansing composition
US8192749B2 (en) 2003-04-16 2012-06-05 Galderma Laboratories Inc. Methods of simultaneously treating ocular rosacea and acne rosacea
US20040220187A1 (en) 2003-04-22 2004-11-04 Pharmacia Corporation Compositions of a cyclooxygenase-2 selective inhibitor and a sodium ion channel blocker for the treatment of pain, inflammation or inflammation mediated disorders
WO2004093895A1 (en) 2003-04-22 2004-11-04 Pharmacia Corporation Compositions of a cyclooxygenase-2 selective inhibitor and a potassium ion channel modulator for the treatment of pain, inflammation or inflammation mediated disorders
US7575739B2 (en) 2003-04-28 2009-08-18 Foamix Ltd. Foamable iodine composition
US8486375B2 (en) 2003-04-28 2013-07-16 Foamix Ltd. Foamable compositions
US8119106B2 (en) 2003-04-28 2012-02-21 Foamix Ltd Foamable iodine compositions
JP2006525145A (en) 2003-05-02 2006-11-09 ケーニッヒ ウント バウエル アクチエンゲゼルシャフト System for inspecting printed images
US6881271B2 (en) 2003-05-08 2005-04-19 Sanyo Electric Co., Ltd. Fixing member for evaporation apparatus
RU2277501C2 (en) 2003-05-16 2006-06-10 Л`Ореаль Product, particularly cosmetic product, metering and dozing device
JP2004348277A (en) 2003-05-20 2004-12-09 Seiko Epson Corp Printer maintenance system, print control server, client, method thereof, and program thereof
US7222802B2 (en) 2003-05-23 2007-05-29 Meadwestvaco Corporation Dual sprayer with external mixing chamber
US20070053943A1 (en) 2003-05-25 2007-03-08 Yuwan Wang Dimethicone-containing sustained release injection formulation
US20040241099A1 (en) 2003-05-28 2004-12-02 Popp Karl F. Foamable pharmaceutical compositions and methods for treating a disorder
US20070059253A1 (en) 2003-05-28 2007-03-15 Stiefel Laboratories, Inc. Foamable pharmaceutical compositions and methods for treating a disorder
US20050079228A1 (en) 2003-05-30 2005-04-14 Ashish Jaiswal Clear, stable topical compositions of clarithromycin and processes for their preparation
US20070010580A1 (en) 2003-05-30 2007-01-11 Gianfranco De Paoli Ambrosi Formulation for chemical peeling
US20060251684A1 (en) 2003-06-04 2006-11-09 Nanobio Corporation Compositions for inactivating pathogenic microorganisms, methods of making the compositions, and methods of use thereof
US20060160713A1 (en) 2003-06-17 2006-07-20 Takasago International Corporation Shampoo and body detergent composition
WO2004112780A1 (en) 2003-06-18 2004-12-29 Galderma S.A. Metronidazole-based green tinted topical pharmaceutical composition
US20050002976A1 (en) 2003-06-19 2005-01-06 The Procter & Gamble Company Polyol-in-silicone emulsions
US20070111956A1 (en) 2003-07-03 2007-05-17 Japan Science And Technology Agency Remedy for sarcoidosis and method of treating the same
US20070140999A1 (en) 2003-07-18 2007-06-21 Hill Dermaceuticals, Inc. Topical skin care composition containing refined peanut oil
WO2005009416A1 (en) 2003-07-24 2005-02-03 Ranbaxy Laboratories Limited Modified release compositions for minocycline
EP1653932A1 (en) 2003-07-24 2006-05-10 Ranbaxy Laboratories Limited Modified release compositions for minocycline
US7226230B2 (en) 2003-07-28 2007-06-05 Raymond Liberatore Spreader
US7704518B2 (en) 2003-08-04 2010-04-27 Foamix, Ltd. Foamable vehicle and pharmaceutical compositions thereof
US9050253B2 (en) 2003-08-04 2015-06-09 Foamix Pharmaceuticals Ltd. Oleaginous pharmaceutical and cosmetic foam
WO2005011567A2 (en) 2003-08-04 2005-02-10 Foamix Ltd. Foam carrier containing amphiphilic copolymeric gelling agent
CA2534372A1 (en) 2003-08-04 2005-02-10 Foamix Ltd. Foam carrier containing amphiphilic copolymeric gelling agent
US20130164225A1 (en) 2003-08-04 2013-06-27 Foamix Ltd. Foamable vehicle and pharmaceutical compositions thereof
US9101662B2 (en) 2003-08-04 2015-08-11 Foamix Pharmaceuticals Ltd. Compositions with modulating agents
US8703105B2 (en) 2003-08-04 2014-04-22 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US8362091B2 (en) 2003-08-04 2013-01-29 Foamix Ltd. Foamable vehicle and pharmaceutical compositions thereof
US8795693B2 (en) 2003-08-04 2014-08-05 Foamix Ltd. Compositions with modulating agents
US20050069566A1 (en) 2003-08-04 2005-03-31 Foamix Ltd. Foam carrier containing amphiphilic copolymeric gelling agent
US7820145B2 (en) 2003-08-04 2010-10-26 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US9636405B2 (en) 2003-08-04 2017-05-02 Foamix Pharmaceuticals Ltd. Foamable vehicle and pharmaceutical compositions thereof
US20170348418A1 (en) 2003-08-04 2017-12-07 Foamix Pharmaceuticals Ltd. Foamable Vehicle and Pharmaceutical Compositions Thereof
US20080069779A1 (en) 2003-08-04 2008-03-20 Foamix Ltd. Foamable vehicle and vitamin and flavonoid pharmaceutical compositions thereof
US20080050317A1 (en) 2003-08-04 2008-02-28 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US8114385B2 (en) 2003-08-04 2012-02-14 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US8486374B2 (en) 2003-08-04 2013-07-16 Foamix Ltd. Hydrophilic, non-aqueous pharmaceutical carriers and compositions and uses
US8518378B2 (en) 2003-08-04 2013-08-27 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US20070292461A1 (en) 2003-08-04 2007-12-20 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
US20050042182A1 (en) 2003-08-13 2005-02-24 Moshe Arkin Topical compositions of urea
EP2422768A2 (en) 2003-08-25 2012-02-29 Foamix Ltd. Penetrating pharmaceutical foam
US20050075407A1 (en) 2003-08-25 2005-04-07 Foamix Ltd. Foam incorporating eutetic mixture
WO2005018530A2 (en) 2003-08-25 2005-03-03 Foamix Ltd. Penetrating pharmaceutical foam
US20060140990A1 (en) 2003-09-19 2006-06-29 Drugtech Corporation Composition for topical treatment of mixed vaginal infections
US20080167376A1 (en) 2003-09-25 2008-07-10 Dmi Biosciences, Inc. Methods and products which utilize N-acyl-L-aspartic acid
US20050084551A1 (en) 2003-09-26 2005-04-21 Jensen Claude J. Morinda citrifolia-based oral care compositions and methods
US20050106197A1 (en) 2003-09-26 2005-05-19 Xavier Blin Cosmetic composition comprising a block polymer and a non-volatile silicone oil
US20070027055A1 (en) 2003-09-29 2007-02-01 Koivisto Bruce M High alcohol content gel-like and foaming compositions
GB2406330A (en) 2003-09-29 2005-03-30 Bespak Plc A dispensing apparatus having a metering chamber
WO2005032522A1 (en) 2003-10-03 2005-04-14 Collegium Pharmaceutical, Inc. Topical aerosol foams
US7793807B2 (en) 2003-10-07 2010-09-14 Valois S.A.S. Metering valve and a fluid dispenser device including such a valve
US20050079139A1 (en) 2003-10-11 2005-04-14 Jacques Elizabeth Joan Minoxidil pharmaceutical foam formulation
GB2406791B (en) 2003-10-11 2008-02-06 Nupharm Lab Ltd Minoxidil pharmaceutical foam formulation
US20070140998A1 (en) 2003-10-14 2007-06-21 Showa Denko K.K. Agent for skin external use containing salt of ascorbic acid derivative, method for stabilizing the agent for skin external use, and stabilizer
FR2860976A1 (en) 2003-10-20 2005-04-22 Ravi Shrivastava Use of oral synergistic composition for treating e.g. cerebral or cardiac dysfunction, contains omega-3 fatty acids, at least two vitamins and at least two trace elements
US20050085843A1 (en) 2003-10-21 2005-04-21 Nmt Medical, Inc. Quick release knot attachment system
WO2005044219A1 (en) 2003-10-31 2005-05-19 The Procter & Gamble Company Skin care composition containing dehydroacetic acid and skin care actives
US20050101936A1 (en) 2003-11-06 2005-05-12 Pediamed Pharmaceuticals, Inc. Multi-site drug delivery platform
US20050100517A1 (en) 2003-11-06 2005-05-12 Unilever Home & Personal Care Usa, Division Of Conopco, Inc. Cosmetic composition
US20050148552A1 (en) 2003-11-06 2005-07-07 Ryan Maria E. Methods of treating eczema
US20050189377A1 (en) 2003-11-17 2005-09-01 Beiersdorf Ag Dispenser and cosmetic or dermatological preparation comprising an auxiliary for use with dispenser
US20050123494A1 (en) 2003-11-17 2005-06-09 Swaile David F. Antiperspirant composition and applicator therefor
US20070141086A1 (en) 2003-11-21 2007-06-21 Ohara Michael K Use of antibiotics as vaccine adjuvants
EP1537916A1 (en) 2003-12-01 2005-06-08 Rieke Corporation Multiple liquid foamer
US20050123496A1 (en) 2003-12-08 2005-06-09 Unilever Home & Personal Care Usa, Division Of Conopco, Inc. Self foaming non-aqueous personal wash cleansers with little or no surfactant
WO2006003481A2 (en) 2003-12-16 2006-01-12 Foamix Ltd. Oleaginous pharmaceutical and cosmetic foam
WO2005063224A1 (en) 2003-12-23 2005-07-14 Merckle Gmbh Topical preparations containing dimethyl sulfoxide and dexpanthenol
US20050222090A1 (en) 2003-12-30 2005-10-06 Gilead Sciences, Inc. Anti-proliferative compounds, compositions, and methods of use thereof
WO2005065652A1 (en) 2004-01-06 2005-07-21 Doron Friedman Non-aqueous composition for oral delivery of insoluble bioactive agents
US20050186147A1 (en) 2004-02-04 2005-08-25 Foamix Ltd. Cosmetic and pharmaceutical foam with solid matter
WO2005076697A2 (en) 2004-02-04 2005-08-25 Foamix Ltd. Cosmetic and pharmaceutical foam with solid matter
US7225518B2 (en) 2004-02-23 2007-06-05 Boston Scientific Scimed, Inc. Apparatus for crimping a stent assembly
EP1584324B1 (en) 2004-02-27 2007-11-21 Kao Corporation Hair cosmetic composition comprising a dicarboxylic acid and an edetic acid
US20050196414A1 (en) 2004-03-03 2005-09-08 Essentia Biosystems, Inc. Compositions and methods for topical application and transdermal delivery of botulinum toxins
US20050207837A1 (en) 2004-03-18 2005-09-22 Bodypoint Designs, Inc. Quick release assembly
DE102004016710A1 (en) 2004-04-05 2005-10-13 Greppmayr Footcare Gmbh Foamable foot care formulation, effective e.g. against hot or cold feet and dry skin, comprising propellant and oil-in-water emulsion containing stabilizer, surfactant, fatty alcohol and nonionic emulsifier
US20080181854A1 (en) 2004-04-08 2008-07-31 Novartis Ag Pimecrolimus Foam Composition Containing Hexylene Glycol, Optionally Oleyl Alcohol, Dimethylisosorbide and/or Medium Chain Triglycerides
EP1734927A1 (en) 2004-04-08 2006-12-27 Novartis AG Pimecrolimus foam composition containing hexylene glycol, optionally oleyl alcohol, dimethylisosorbide and/or medium chain triglycerides
WO2005097068A1 (en) 2004-04-08 2005-10-20 Novartis Ag Pimecrolimus foam composition containing hexylene glycol, optionally oleyl alcohol, dimethylisosorbide and/or medium chain triglycerides
WO2005102282A1 (en) 2004-04-19 2005-11-03 Strategic Science & Technologies, Llc Transdermal delivery of beneficial substances effected by a hostile biophysical environment
WO2005102539A1 (en) 2004-04-23 2005-11-03 Airspray N.V. Dispensing assembly
WO2006131784A1 (en) 2004-04-28 2006-12-14 Foamix Ltd. Body cavity foams
US20050244354A1 (en) 2004-04-30 2005-11-03 Sam Speron Oxygenated personal care products
JP2005314323A (en) 2004-04-30 2005-11-10 Sato Pharmaceutical Co Ltd Hair growth formulation
US20050255048A1 (en) 2004-05-15 2005-11-17 Collegium Pharmaceutical, Inc. Sprayable formulations for the treatment of acute inflammatory skin conditions
US20050252995A1 (en) 2004-05-17 2005-11-17 Westphal Nathan R Detachable tube assembly
US20050258189A1 (en) 2004-05-21 2005-11-24 Scott Peterson Reconfigurable metered material dispenser
EP1758547A1 (en) 2004-05-26 2007-03-07 L'oreal Cosmetic mousse formulations
WO2005117813A1 (en) 2004-05-26 2005-12-15 L'oreal Cosmetic mousse formulations
EP1600185A1 (en) 2004-05-28 2005-11-30 Progine Farmaceutici Srl Vaginal spray nozzle
US20050268416A1 (en) 2004-06-03 2005-12-08 Sommers J E Foldable lotion applicator
JP2005350378A (en) 2004-06-09 2005-12-22 Pola Chem Ind Inc Warm sensation cosmetic of post foam dosage form
US20050281749A1 (en) 2004-06-17 2005-12-22 Galderma S.A. Sprayable compositions comprising a combination of pharmaceutical actives and an oily phase
US20050281755A1 (en) 2004-06-17 2005-12-22 Galderma S.A. Topical foam/mousse compositions for treating psoriasis
US20050287081A1 (en) 2004-06-24 2005-12-29 Dpt Laboratories, Ltd. Pharmaceutically elegant, topical anhydrous aerosol foam
WO2006031271A2 (en) 2004-06-24 2006-03-23 Dpt Laboratories, Ltd. Pharmaceutically elegant, topical anhydrous aerosol foam
JP2006008574A (en) 2004-06-25 2006-01-12 Pola Chem Ind Inc Non-aqueous foam cosmetic imparting warm sensation
US20050285912A1 (en) 2004-06-28 2005-12-29 Eastman Kodak Company Latency stirring in fluid ejection mechanisms
WO2006091229A2 (en) 2004-06-29 2006-08-31 Allergan, Inc. Methods of modulating intracellular degradation rates of toxins
US20060008432A1 (en) 2004-07-07 2006-01-12 Sebastiano Scarampi Gilsonite derived pharmaceutical delivery compositions and methods: nail applications
US20080035155A1 (en) 2004-07-09 2008-02-14 Gilead Sciences, Inc. Topical Antiviral Formulations
US20060121073A1 (en) 2004-07-12 2006-06-08 Sandhya Goyal Topical gel formulation comprising insecticide and its preparation thereof
WO2006011046A1 (en) 2004-07-19 2006-02-02 Warner-Lambert Company Llc Formulation for stimulating hair growth
JP2006036317A (en) 2004-07-29 2006-02-09 Yoshino Kogyosho Co Ltd Metering dispenser
WO2006010589A2 (en) 2004-07-29 2006-02-02 Mipharm S.P.A. Post foaming gel mousse
US20060029565A1 (en) 2004-08-09 2006-02-09 The Gillette Company Self-heating shave foam product
WO2006020682A1 (en) 2004-08-12 2006-02-23 Triaccess Technologies, Inc. Level detector for optical receivers
US20060057168A1 (en) 2004-08-31 2006-03-16 Connetics Australia Pty Ltd Microemulsion process and composition
WO2006028339A1 (en) 2004-09-04 2006-03-16 Young Dae Kim Nano-emulsion, the use thereof, and preparation method thereof
US20080063682A1 (en) 2004-09-23 2008-03-13 Johanne Cashman Pharmaceutical compositions and methods relating to inhibiting fibrous adhesions or inflammatory disease using low sulphate fucans
US20090214628A1 (en) 2004-09-27 2009-08-27 De Rijk Jan Methods and compositions for treatment of skin
JP2006103799A (en) 2004-09-30 2006-04-20 L'oreal Sa Distribution assembly for distributing two products
WO2006045170A2 (en) 2004-10-26 2006-05-04 Natura Cosméticos S.A. An oil-in-water nanoemulsion, a cosmetic composition and a cosmetic product comprising it, a process for preparing said nanoemulsion
US20060114745A1 (en) 2004-11-02 2006-06-01 Ute Ollmann Apparatus for blending two different components
US20060108377A1 (en) 2004-11-19 2006-05-25 Glynn Kenneth P Metered dose squeeze dispenser
US20060110415A1 (en) 2004-11-22 2006-05-25 Bioderm Research Topical Delivery System for Cosmetic and Pharmaceutical Agents
US20090093514A1 (en) 2004-12-17 2009-04-09 3M Innovative Properties Company Immune response modifier formulations containing oleic acid and methods
US20090017147A1 (en) 2005-01-14 2009-01-15 Sederma Cosmetic or Dermopharmaceutical Composition Comprising an Euglena Extract
WO2007072216A2 (en) 2005-01-24 2007-06-28 Foamix Ltd. Kit and composition of imidazole with enhanced bioavailability
WO2006081327A2 (en) 2005-01-25 2006-08-03 University Of Vermont And State Agricultural College Small molecules that reduce fungal growth
WO2006079632A1 (en) 2005-01-28 2006-08-03 Basf Aktiengesellschaft Use of a water-in-water emulsion polymers in the form of a thickener for cosmetic preparations
US20060177392A1 (en) 2005-02-10 2006-08-10 William Walden Oil-based composition for acne
US20060193813A1 (en) 2005-02-11 2006-08-31 L'oreal Nanoemulsion containing a hydroxylated urea compound
WO2007007208A2 (en) 2005-03-11 2007-01-18 Foamix Ltd. Nonsteroidal immunomodulating kit and composition and uses thereof
WO2006100485A1 (en) 2005-03-24 2006-09-28 Transphase Limited A topical composition and its uses
US20090061001A1 (en) 2005-03-24 2009-03-05 Ensign Laboratories Pty Ltd Sunscreen aerosol spray
US20060222675A1 (en) 2005-03-29 2006-10-05 Sabnis Ram W Personal care compositions with color changing indicator
US20070069046A1 (en) 2005-04-19 2007-03-29 Foamix Ltd. Apparatus and method for releasing a measure of content from a plurality of containers
US20060285912A1 (en) 2005-04-19 2006-12-21 Foamix Ltd. Apparatus and method for releasing a measured amount of content from a container
WO2007012977A2 (en) 2005-04-26 2007-02-01 Foamix Ltd Steroid kit and foamable composition and uses thereof
WO2006121610A2 (en) 2005-05-05 2006-11-16 Genencor International, Inc. Personal care compositions and methods for their use
WO2007023396A2 (en) 2005-05-09 2007-03-01 Foamix Ltd. Vasoactive kit and composition and uses thereof
WO2007054818A2 (en) 2005-05-09 2007-05-18 Foamix Ltd. Foamable vehicle and pharmaceutical compositions thereof
US7645803B2 (en) 2005-05-09 2010-01-12 Foamix Ltd. Saccharide foamable compositions
US20100111879A1 (en) 2005-05-09 2010-05-06 Foamix Ltd. Saccharide foamable compositions
WO2007039825A2 (en) 2005-05-09 2007-04-12 Foamix Ltd. Saccharide foamable compositions
WO2006120682A2 (en) 2005-05-10 2006-11-16 Dermipsor Ltd. Compositions and methods for treating hyperproliferative epidermal diseases
WO2006122158A2 (en) 2005-05-10 2006-11-16 Xanthone Plus International, Llc Skin care compositions containing xanthones
US20090131488A1 (en) 2005-05-10 2009-05-21 Dermipsor Ltd. Compositions and methods for treating hyperproliferative epidermal diseases
WO2006129161A2 (en) 2005-06-01 2006-12-07 Stiefel Research Australia Pty Ltd Vitamin formulation
US20060272199A1 (en) 2005-06-02 2006-12-07 Bmc Manufacturing, Llc Aqueous gel candle for use with a warming device
US8211874B2 (en) 2005-06-03 2012-07-03 Galderma Laboratories Inc. Inhibition of thrombin generation
WO2007099396A2 (en) 2005-06-07 2007-09-07 Foamix Ltd. Antibiotic kit and composition and uses thereof
US20070009607A1 (en) 2005-07-11 2007-01-11 George Jones Antibacterial/anti-infalmmatory composition and method
US20070015739A1 (en) 2005-07-15 2007-01-18 Walker Stephen G Use of non-antibacterial tetracycline formulations for inhibiting bacterial spores
US20080131378A1 (en) 2005-07-18 2008-06-05 Walter Keller Aerosol Cream Mousse and Method of Treating Hair
US20080152596A1 (en) 2005-07-19 2008-06-26 Foamix Ltd. Polypropylene glycol foamable vehicle and pharmaceutical compositions thereof
WO2007085902A2 (en) 2005-07-19 2007-08-02 Foamix Ltd. Foamable composition combining a polar solvent and a hydrophobic carrier
WO2007010494A1 (en) 2005-07-22 2007-01-25 The Procter & Gamble Company Hair treatment method using dry foam as mechanical support for hair
US20070017696A1 (en) 2005-07-22 2007-01-25 Hon Hai Precision Industry Co., Ltd. Multi-layer printed circuit board
US20160361252A1 (en) 2005-08-04 2016-12-15 Patrick Franke Anhydrous multiphase gel system
US20070036831A1 (en) 2005-08-09 2007-02-15 Nanobio Corporation Nanoemulsion compositions having anti-inflammatory activity
US20080255498A1 (en) 2005-08-25 2008-10-16 Houle Philip R Sensitizer Solutions, Systems, and Methods of Use
WO2007031621A2 (en) 2005-09-13 2007-03-22 Galderma S.A Metronidazole-based dermatological foam and emulsions for the production thereof
US20080241079A1 (en) 2005-09-28 2008-10-02 Neubourg Skin Care Gmbh & Co. Kg Skin Care Products
US20070098647A1 (en) 2005-09-28 2007-05-03 Neubourg Skin Care Gmbh & Co. Kg Skin care products
US20070154402A1 (en) 2005-10-24 2007-07-05 Collegium Pharmaceutical, Inc. Topical Pharmaceutical Foam Composition
US20120128598A1 (en) 2005-10-24 2012-05-24 Precision Dermatology, Inc. Topical Pharmaceutical Foam Composition
WO2007050543A2 (en) 2005-10-24 2007-05-03 Collegium Pharmaceutical, Inc. Topical pharmaceutical foam composition
US20070134174A1 (en) 2005-11-03 2007-06-14 Christopher Irwin Personal care composition
JP2007131539A (en) 2005-11-08 2007-05-31 Koike Kagaku Kk Chilling foam cosmetic
US20070148194A1 (en) 2005-11-29 2007-06-28 Amiji Mansoor M Novel nanoemulsion formulations
JP2007155667A (en) 2005-12-08 2007-06-21 Sumitomo Heavy Ind Ltd Radiation detection unit and radiation inspection apparatus
US20070160548A1 (en) 2005-12-13 2007-07-12 Playtex Products, Inc. Moisturizing sunless tanning composition
US20070142263A1 (en) 2005-12-15 2007-06-21 Stahl Katherine D Color changing cleansing composition
US20070148112A1 (en) 2005-12-28 2007-06-28 Avon Products, Inc. Foaming, color-changing topical composition and method of imparting a cosmetic effect
WO2007082698A1 (en) 2006-01-19 2007-07-26 Disphar International B.V. Foam-forming composition
US20070166274A1 (en) 2006-01-19 2007-07-19 Mazur Leonard L 7-Dimethylamino-6-Demethyl-6-Deoxytetracycline Skin Treatment Kit
US20090053290A1 (en) 2006-03-08 2009-02-26 Sand Bruce J Transdermal drug delivery compositions and topical compositions for application on the skin
US20070224143A1 (en) 2006-03-21 2007-09-27 Kamedis Ltd. Cosmetic and pharmaceutical foam carrier
WO2007111962A2 (en) 2006-03-22 2007-10-04 The Procter & Gamble Company Aerosol product comprising a foaming concentrate composition comprising particulate materials
US7252816B1 (en) 2006-03-29 2007-08-07 Dow Pharmaceutical Sciences Topical acne vulgairs medication with a sunscreen
US8158109B2 (en) 2006-03-31 2012-04-17 Stiefel Research Australia Pty Ltd Foamable suspension gel
US20070237724A1 (en) 2006-03-31 2007-10-11 Abram Albert Z Foamable suspension gel
WO2008075207A2 (en) 2006-04-04 2008-06-26 Foamix Ltd. Anti-infection augmentation foamable compositions and kit and uses thereof
US20070264317A1 (en) 2006-05-15 2007-11-15 Perrigo Israel Pharmaceuticals Ltd. Imiquimod cream formulation
US20070281999A1 (en) 2006-05-31 2007-12-06 The Dial Corporation Alcohol-containing antimicrobial compositions having improved efficacy
JP2007326996A (en) 2006-06-09 2007-12-20 Alps Electric Co Ltd Lubricating composition for electrical contact
WO2008110872A2 (en) 2006-06-23 2008-09-18 Foamix Ltd. Foamable compositions and kits comprising one or more of a channel agent, a cholinergic agent, a nitric oxide donor, and related agents and their uses
US20080008397A1 (en) 2006-07-04 2008-01-10 Pavel Kisilev Feature-aware image defect removal
WO2008038147A2 (en) 2006-07-05 2008-04-03 Foamix Ltd. Foamable vehicle comprising dicarboxylic acid or dicarboxylic acid ester and pharmaceutical compositions thereof
EP2494959A1 (en) 2006-07-05 2012-09-05 Foamix Ltd. Dicarboxylic acid foamable vehicle and pharmaceutical compositions thereof
WO2008008397A2 (en) 2006-07-14 2008-01-17 Stiefel Research Australia Pty Ltd Fatty acid pharmaceutical foam
US20080015271A1 (en) 2006-07-14 2008-01-17 Stiefel Research Austrialia Pty Ltd Fatty acid pharmaceutical foam
WO2008010963A2 (en) 2006-07-18 2008-01-24 3M Innovative Properties Company Immune response modifier formulations
EP1889609A2 (en) 2006-07-18 2008-02-20 Meda AB Immune response modifier foam formulations
US20080031908A1 (en) 2006-07-25 2008-02-07 L'oreal Oily cosmetic composition in aerosol form
US20080166303A1 (en) 2006-09-08 2008-07-10 Dov Tamarkin Colored or colorable foamable composition and foam
US20090175799A1 (en) 2006-09-08 2009-07-09 Dov Tamarkin Colored or colorable topical composition foam
EP1902706A1 (en) 2006-09-25 2008-03-26 Divasa-Farmavic, S.A. Stable pharmaceutical compositions of tetracyclines in solution, method for obtaining them and their uses
WO2008041045A1 (en) 2006-10-06 2008-04-10 Piller Istvan A multi chamber container for the production and dispensing of carbon dioxide foam, process for production and use of said foam
WO2009007785A2 (en) 2006-11-14 2009-01-15 Foamix Ltd. Stable non-alcoholic foamable pharmaceutical emulsion compositions with an unctuous emollient and their uses
US20110097279A1 (en) 2006-11-14 2011-04-28 Foamix Ltd. Stable non-alcoholic foamable pharmaceutical emulsion compositions with an unctuous emollient and their uses
US20080260655A1 (en) 2006-11-14 2008-10-23 Dov Tamarkin Substantially non-aqueous foamable petrolatum based pharmaceutical and cosmetic compositions and their uses
US8795635B2 (en) 2006-11-14 2014-08-05 Foamix Ltd. Substantially non-aqueous foamable petrolatum based pharmaceutical and cosmetic compositions and their uses
US20140248219A1 (en) 2006-11-14 2014-09-04 Foamix Ltd. Substantially non-aqueous foamable petrolatum based pharmaceutical and cosmetic compositions and their uses
US20080206155A1 (en) 2006-11-14 2008-08-28 Foamix Ltd. Stable non-alcoholic foamable pharmaceutical emulsion compositions with an unctuous emollient and their uses
US9682021B2 (en) 2006-11-14 2017-06-20 Foamix Pharmaceuticals Ltd. Substantially non-aqueous foamable petrolatum based pharmaceutical and cosmetic compositions and their uses
WO2008152444A2 (en) 2006-11-29 2008-12-18 Foamix Ltd. Foamable waterless compositions with modulating agents
US9192558B2 (en) 2006-12-15 2015-11-24 The Procter & Gamble Company Skin care compositions
US20080153789A1 (en) 2006-12-26 2008-06-26 Femmepharma Holding Company, Inc. Topical administration of danazol
US20080292560A1 (en) 2007-01-12 2008-11-27 Dov Tamarkin Silicone in glycol pharmaceutical and cosmetic compositions with accommodating agent
WO2008087148A2 (en) 2007-01-16 2008-07-24 Oystershell N.V. Foamable composition for killing arthropods and uses thereof
US20080188446A1 (en) 2007-02-02 2008-08-07 Warner Chilcott Company Inc. Tetracycline compositions for topical administration
US20080188445A1 (en) 2007-02-02 2008-08-07 Warner Chilcott Company Inc. Tetracycline compositions for topical administration
US20100286417A1 (en) 2007-02-23 2010-11-11 Hovione Inter Limited Crystalline Minocycline Base and Processes for its Preparation
WO2008104734A1 (en) 2007-02-28 2008-09-04 Neuropharm Ltd. Treatment of anxiety disorders with minocycline
EP2129383A1 (en) 2007-02-28 2009-12-09 Neuropharm Ltd. Treatment of anxiety disorders with minocycline
FR2915891A1 (en) 2007-05-10 2008-11-14 Oreal Cosmetic composition in foam form, useful for e.g. for make-up or non-therapeutic care of keratinous materials, comprises an oily continuous phase and at least structural agent of oily phase comprising silicone polymer
US20080311167A1 (en) 2007-06-12 2008-12-18 Oronsky Bryan T Topical Composition for Treating Pain
US10369102B2 (en) 2007-08-07 2019-08-06 Foamix Pharmaceuticals Ltd. Wax foamable vehicle and pharmaceutical compositions thereof
US8636982B2 (en) 2007-08-07 2014-01-28 Foamix Ltd. Wax foamable vehicle and pharmaceutical compositions thereof
US20180000734A1 (en) 2007-08-07 2018-01-04 Foamix Pharmaceuticals Ltd. Wax Foamable Vehicle and Pharmaceutical Compositions Thereof
US9662298B2 (en) 2007-08-07 2017-05-30 Foamix Pharmaceuticals Ltd. Wax foamable vehicle and pharmaceutical compositions thereof
US8617100B2 (en) 2007-09-04 2013-12-31 Foamix Ltd. Device for delivery of a foamable composition
US20090130029A1 (en) 2007-11-21 2009-05-21 Foamix Ltd. Glycerol ethers vehicle and pharmaceutical compositions thereof
WO2009069006A2 (en) 2007-11-30 2009-06-04 Foamix Ltd. Foam containing benzoyl peroxide
US20170157175A1 (en) 2007-11-30 2017-06-08 Foamix Pharmaceuticals Ltd. Foam containing benzoyl peroxide
US9439857B2 (en) 2007-11-30 2016-09-13 Foamix Pharmaceuticals Ltd. Foam containing benzoyl peroxide
US9795564B2 (en) 2007-12-07 2017-10-24 Foamix Pharmaceuticals Ltd. Oil-based foamable carriers and formulations
WO2009072007A2 (en) 2007-12-07 2009-06-11 Foamix Ltd. Carriers, formulations, methods for formulating unstable active agents for external application and uses thereof
US8518376B2 (en) 2007-12-07 2013-08-27 Foamix Ltd. Oil-based foamable carriers and formulations
US20170181970A1 (en) 2007-12-07 2017-06-29 Foamix Pharmaceuticals Ltd. Oil foamable carriers and formulations
US8900553B2 (en) 2007-12-07 2014-12-02 Foamix Pharmaceuticals Ltd. Oil and liquid silicone foamable carriers and formulations
US20190091149A1 (en) 2007-12-07 2019-03-28 Foamix Pharmaceuticals Ltd. Oil foamable carriers and formulations
WO2009090495A2 (en) 2007-12-07 2009-07-23 Foamix Ltd. Oil and liquid silicone foamable carriers and formulations
US8343945B2 (en) 2007-12-07 2013-01-01 Foamix Ltd. Carriers, formulations, methods for formulating unstable active agents for external application and uses thereof
US9549898B2 (en) 2007-12-07 2017-01-24 Foamix Pharmaceuticals Ltd. Oil and liquid silicone foamable carriers and formulations
US9161916B2 (en) 2007-12-07 2015-10-20 Foamix Pharmaceuticals Ltd. Carriers, formulations, methods for formulating unstable active agents for external application and uses thereof
WO2009087578A2 (en) 2008-01-08 2009-07-16 Foamix Ltd. Sensation modifying topical composition foam
US8709385B2 (en) 2008-01-14 2014-04-29 Foamix Ltd. Poloxamer foamable pharmaceutical compositions with active agents and/or therapeutic cells and uses
WO2009090558A2 (en) 2008-01-14 2009-07-23 Foamix Ltd. Poloxamer foamable pharmaceutical compositions with active agents and/or therapeutic cells and uses
WO2009098595A2 (en) 2008-02-04 2009-08-13 Foamix Ltd. Substantially non-aqueous foamable petrolatum based pharmaceutical and cosmetic compositions and their uses
US8652443B2 (en) 2008-02-14 2014-02-18 Precision Dermatology, Inc. Foamable microemulsion compositions for topical administration
US20110002969A1 (en) 2008-02-29 2011-01-06 Lipotec, S.A. Cosmetic or pharmaceutical compositions comprising metalloproteinase inhibitors
US9265740B2 (en) 2008-03-05 2016-02-23 Paratek Pharmaceuticals, Inc.-124418 Minocycline compounds and methods of use thereof
US20090291917A1 (en) 2008-03-06 2009-11-26 Anacor Pharmaceuticals, Inc. Boron-Containing Small Molecules as Anti-Inflammatory Agents
US20120141384A1 (en) 2008-05-06 2012-06-07 Dov Tamarkin Antibacterial conjugated boronic acids and pharmaceutical compositions thereof
US20160213757A1 (en) 2008-06-26 2016-07-28 Anterios, Inc. Dermal Delivery
US20110207765A1 (en) 2008-10-31 2011-08-25 Moberg Derma Ab Topical composition comprising a combination of at least two penetration enhancing agents
US20100247449A1 (en) 2008-12-23 2010-09-30 Intendis Gmbh Foamable composition essentially free of pharmaceutically active ingredients for the treatment of human skin
US20140140937A1 (en) 2009-02-12 2014-05-22 Precision Dermatology, Inc. Foamable Benzoyl Peroxide Compositions for Topical Administration
US20100221194A1 (en) 2009-02-25 2010-09-02 Loupenok Leon Topical foam composition
US20120164087A1 (en) 2009-04-24 2012-06-28 Carter Daniel C Human Serum Albumin-Based Topical Ointment for Treatment of Acne, Psoriasis, Egfr-Induced Toxicity, Premature Skin Aging and Other Skin Conditions
US20180153804A1 (en) 2009-04-28 2018-06-07 Foamix Pharmaceuticals Ltd. Foamable vehicles and pharmaceutical compositions comprising aprotic polar solvents and uses thereof
US10213384B2 (en) 2009-04-28 2019-02-26 Foamix Pharmaceuticals Ltd. Foamable vehicles and pharmaceutical compositions comprising aprotic polar solvents and uses thereof
US10588858B2 (en) 2009-04-28 2020-03-17 Foamix Pharmaceuticals Ltd. Foamable vehicles and pharmaceutical compositions comprising aprotic polar solvents and uses thereof
US10363216B2 (en) 2009-04-28 2019-07-30 Foamix Pharmaceuticals Ltd. Foamable vehicles and pharmaceutical compositions comprising aprotic polar solvents and uses thereof
US20120087872A1 (en) 2009-04-28 2012-04-12 Foamix Ltd. Foamable Vehicles and Pharmaceutical Compositions Comprising Aprotic Polar Solvents and Uses Thereof
US9884017B2 (en) 2009-04-28 2018-02-06 Foamix Pharmaceuticals Ltd. Foamable vehicles and pharmaceutical compositions comprising aprotic polar solvents and uses thereof
US20120181201A1 (en) 2009-06-26 2012-07-19 Hovione Inter Limited Topical Formulation Containing a Tetracycline and a Method of Treating Skin Infections Using the Same
WO2011006026A1 (en) 2009-07-09 2011-01-13 L'air Liquide Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges Claude Presenting dynamic scada data
US9572775B2 (en) 2009-07-29 2017-02-21 Foamix Pharmaceuticals Ltd. Non surfactant hydro-alcoholic foamable compositions, breakable foams and their uses
US9072667B2 (en) 2009-07-29 2015-07-07 Foamix Pharmaceuticals Ltd. Non surface active agent non polymeric agent hydro-alcoholic foamable compositions, breakable foams and their uses
US10092588B2 (en) 2009-07-29 2018-10-09 Foamix Pharmaceuticals Ltd. Foamable compositions, breakable foams and their uses
US20190054106A1 (en) 2009-07-29 2019-02-21 Foamix Pharmaceuticals Ltd. Foamable compositions, breakable foams and their uses
WO2011013008A2 (en) 2009-07-29 2011-02-03 Foamix Ltd. Non surface active agent non polymeric agent hydro-alcoholic foamable compositions, breakable foams and their uses
US20170216334A1 (en) 2009-07-29 2017-08-03 Foamix Pharmaceuticals Ltd. Foamable Compositions, Breakable Foams And Their Uses
US9167813B2 (en) 2009-07-29 2015-10-27 Foamix Pharmaceuticals Ltd. Non surfactant hydro-alcoholic foamable compositions, breakable foams and their uses
US10350166B2 (en) 2009-07-29 2019-07-16 Foamix Pharmaceuticals Ltd. Non surface active agent non polymeric agent hydro-alcoholic foamable compositions, breakable foams and their uses
WO2011013009A2 (en) 2009-07-29 2011-02-03 Foamix Ltd. Non surfactant hydro-alcoholic foamable compositions, breakable foams and their uses
US20150374625A1 (en) 2009-07-29 2015-12-31 Foamix Pharmaceuticals Ltd. Non Surface Active Agent Non Polymeric Agent Hydro-Alcoholic Foamable Compositions, Breakable Foams And Their Uses
WO2011026094A2 (en) 2009-08-31 2011-03-03 Collegium Pharmaceutical, Inc. Stable aerosol topical foams comprising a hypochlorite salt
US20180147218A1 (en) 2009-10-02 2018-05-31 Foamix Pharmaceuticals Ltd. Methods for Accelerated Return of Skin Integrity and for the Treatment of Impetigo
WO2011039638A2 (en) 2009-10-02 2011-04-07 Foamix Ltd. Topical tetracycline compositions
US20160101184A1 (en) 2009-10-02 2016-04-14 Foamix Pharmaceuticals Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US10086080B2 (en) 2009-10-02 2018-10-02 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US10517882B2 (en) 2009-10-02 2019-12-31 Foamix Pharmaceuticals Ltd. Method for healing of an infected acne lesion without scarring
US8945516B2 (en) 2009-10-02 2015-02-03 Foamix Pharmaceuticals Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US20130064777A1 (en) * 2009-10-02 2013-03-14 Foamix Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels their uses
US9849142B2 (en) 2009-10-02 2017-12-26 Foamix Pharmaceuticals Ltd. Methods for accelerated return of skin integrity and for the treatment of impetigo
US10463742B2 (en) 2009-10-02 2019-11-05 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US20140121188A1 (en) * 2009-10-02 2014-05-01 Foamix Ltd. Compositions for the improved treatment of acne and related disorders
US8992896B2 (en) 2009-10-02 2015-03-31 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US20140066524A1 (en) 2009-10-02 2014-03-06 Foamix Ltd. Compositions, gels and foams with rheology modulators and uses thereof
US8871184B2 (en) 2009-10-02 2014-10-28 Foamix Ltd. Topical tetracycline compositions
US10322186B2 (en) 2009-10-02 2019-06-18 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US20190134203A1 (en) 2009-10-02 2019-05-09 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US20170340743A1 (en) 2009-10-02 2017-11-30 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US10137200B2 (en) 2009-10-02 2018-11-27 Foamix Pharmaceuticals Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US20170014517A1 (en) 2009-10-02 2017-01-19 Foamix Pharmaceuticals Ltd. Vehicle compositions essentially free of pharmaceutically active agents for the improved treatment of acne and related disorders
US20190134204A1 (en) 2009-10-02 2019-05-09 Foamix Pharmaceuticals Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US20150196570A1 (en) 2009-10-02 2015-07-16 Foamix Pharmaceuticals Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US10265404B2 (en) 2009-10-02 2019-04-23 Foamix Pharmaceuticals Ltd. Compositions, gels and foams with rheology modulators and uses thereof
WO2011039637A2 (en) 2009-10-02 2011-04-07 Foamix Ltd. Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US10238746B2 (en) 2009-10-02 2019-03-26 Foamix Pharmaceuticals Ltd Surfactant-free water-free foamable compositions, breakable foams and gels and their uses
US10029013B2 (en) 2009-10-02 2018-07-24 Foamix Pharmaceuticals Ltd. Surfactant-free, water-free formable composition and breakable foams and their uses
US20150190409A1 (en) * 2009-10-02 2015-07-09 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US20190000980A1 (en) 2009-10-02 2019-01-03 Foamix Pharmaceuticals Ltd. Surfactant-free, water-free formable composition and breakable foams and their uses
GB2474930A (en) 2009-10-02 2011-05-04 Foamix Ltd Topical composition comprising a tetracycline
US8865139B1 (en) 2009-10-02 2014-10-21 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US10213512B2 (en) 2009-10-02 2019-02-26 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
WO2011064631A1 (en) 2009-10-02 2011-06-03 Foamix Ltd. Surfactant-free, water-free, foamable compositions and breakable foams and their uses
US8618081B2 (en) 2009-10-02 2013-12-31 Foamix Ltd. Compositions, gels and foams with rheology modulators and uses thereof
US9675700B2 (en) 2009-10-02 2017-06-13 Foamix Pharmaceuticals Ltd. Topical tetracycline compositions
US8735377B1 (en) 2010-02-04 2014-05-27 Susan Anna Sipos Methods of treating herpes zoster
WO2011106026A1 (en) 2010-02-26 2011-09-01 Precision Dermatology, Inc. Emollient foams for treatment of dermatoses
US8623330B2 (en) 2010-03-18 2014-01-07 Precision Dermatology, Inc. Emollient foams for treatment of seborrheic dermatitis
US8592380B2 (en) 2010-03-26 2013-11-26 Precision Dermatology, Inc. Aerosol foams comprising clindamycin phosphate
US20120082632A1 (en) 2010-04-21 2012-04-05 Phillips D Howard Topical drug delivery system with dual carriers
WO2011138678A2 (en) 2010-05-04 2011-11-10 Foamix Ltd. Compositions, gels and foams with rheology modulators and uses thereof
US20130053353A1 (en) 2010-05-04 2013-02-28 Foamix Ltd. Compositions, gels and foams with rheology modulators and uses
US8784780B2 (en) 2010-06-11 2014-07-22 Precision Dermatology, Inc. High oil-content emollient aerosol foam compositions
US20130161351A1 (en) 2010-07-12 2013-06-27 Foamix Ltd. Apparatus and method for releasing a unit dose of content from a container
US20140228355A1 (en) 2010-08-11 2014-08-14 University Of Medicine And Dentistry New Jersey Medical School Novel D3 Dopamine Receptor Agonists to Treat Dyskinesia in Parkinson's Disease
US20120064136A1 (en) 2010-09-10 2012-03-15 Nanobio Corporation Anti-aging and wrinkle treatment methods using nanoemulsion compositions
US20120093876A1 (en) 2010-10-13 2012-04-19 Aciex, Inc. Ophthalmic Formulations, Methods Of Manufacture And Methods of Normalizing Meibomian Gland Secretions
US8895536B2 (en) 2010-10-29 2014-11-25 Infirst Healthcare Ltd. Compositions and methods for treating chronic inflammation and inflammatory diseases
US9271930B2 (en) 2010-12-23 2016-03-01 Galderma Research And Development Dermatological foams obtained from a gel or suspension containing adapalene
US9539266B2 (en) 2011-01-19 2017-01-10 Laboratory Skin Care, Inc. Topical minocycline compositions and methods of using the same
WO2012100097A2 (en) 2011-01-19 2012-07-26 Laboratory Skin Care, Inc. Topical minocycline compositions and methods of using the same
US20140221320A1 (en) 2011-07-08 2014-08-07 The Research Foundation For The State University Of New York Topical minocycline ointment for suppression of allergic skin responses
US20130115173A1 (en) 2011-11-03 2013-05-09 Precision Dermatology, Inc. Stable Dermatological Aerosol Foams Utilizing Reactive Propellants
US20130261565A1 (en) 2012-03-14 2013-10-03 Becton, Dickinson And Company Angled Retracting Sheath for Safety Needle
US20150164922A1 (en) 2012-03-15 2015-06-18 Foamix Pharmaceuticals Ltd. Use of tetracycline compositions for wound treatment and skin restoration
WO2013136192A2 (en) 2012-03-15 2013-09-19 Foamix Ltd. Use of tetracycline compositions for wound treatment and skin restoration
US20130251644A1 (en) 2012-03-22 2013-09-26 Precision Dermatology, Inc. Cyclodextrin-Based Microemulsions, and Dermatological Uses Thereof
US20130296387A1 (en) 2012-05-02 2013-11-07 Samy Saad Topical non-aqueous pharmaceutical formulations
US20150174144A1 (en) 2012-07-13 2015-06-25 Paratek Pharmaceuticals, Inc. Tetracycline compounds for treating neurodegenerative disorders
US9592246B2 (en) 2012-11-27 2017-03-14 Hovione International Ltd. Tetracycline topical formulations, preparation and uses thereof
US20140186269A1 (en) 2013-01-03 2014-07-03 Foamix Ltd. Vehicle compositions essentially free of pharmaceutically active agents for the improved treatment of acne and related disorders
US8778365B1 (en) 2013-01-31 2014-07-15 Merz Pharmaceuticals, Llc Topical compositions and methods for making and using same
US20140242016A1 (en) 2013-02-22 2014-08-28 Stiefel Laboratories, Inc. Non-aqueous solid stabilized emulsions
WO2014134394A1 (en) 2013-02-28 2014-09-04 Precision Dermatology, Inc. Topical formulations of corticosteroids with enhanced bioavailability
WO2014134427A1 (en) 2013-02-28 2014-09-04 Precision Dermatology, Inc. Controlling the bioavailability of active ingredients in topical formulations
WO2014151347A1 (en) 2013-03-15 2014-09-25 Revance Therapeutics, Inc. Minocycline derivatives
US20160128944A1 (en) 2013-06-04 2016-05-12 Vyome Biosciences Pvt. Ltd. Coated particles and compositions comprising same
WO2014201541A1 (en) 2013-06-17 2014-12-24 Contract Pharmaceuticals Limited Non-aerosol foams for topical administration
US20150209296A1 (en) 2013-11-04 2015-07-30 BioPharmX, Inc. Dosage form comprising an active ingredient and a plurality of solid porous microcarriers
US9474720B2 (en) 2013-11-04 2016-10-25 BioPharmX, Inc. Dosage form comprising an active ingredient and a plurality of solid porous microcarriers
WO2015075640A1 (en) 2013-11-20 2015-05-28 Lupin Limited Stable pharmaceutical formulation(s) of tetracycline antibiotic
WO2015114320A1 (en) 2014-01-28 2015-08-06 Hovione International Ltd Assisted particle size reduction process
WO2015153864A2 (en) 2014-04-02 2015-10-08 Hopkins Patricia T Methods for treating inflammatory conditions
US9841142B2 (en) 2014-12-22 2017-12-12 Rockwell Automation Technologies, Inc. Single-wire industrial safety system with safety device diagnostic communication
US20160279152A1 (en) 2015-03-23 2016-09-29 BioPharmX, Inc. Pharmaceutical tetracycline composition for dermatological use
US20160287615A1 (en) 2015-04-03 2016-10-06 BioPharmX, Inc. Novel encapsulation of fluorescent, photo-sensitive, or oxygen-sensitive active ingredient for topical application
US20160361320A1 (en) 2015-06-15 2016-12-15 Banner Life Sciences Llc Soft lozenges comprising corticosteroids
US9931328B2 (en) 2015-07-13 2018-04-03 Dr. Reddy's Laboratories Ltd. Topical retinoid compositions
WO2017030555A1 (en) 2015-08-17 2017-02-23 Bhalani Vinayak T Topical film delivery system
US20170049712A1 (en) 2015-08-17 2017-02-23 Sidmak Laboratories (India) Pvt. Ltd. Topical film delivery system
US20180235984A1 (en) 2015-08-20 2018-08-23 Foamix Pharmaceuticals Ltd. Tetracycline management of egfr inhibitor associated dermatoses
WO2017029647A1 (en) 2015-08-20 2017-02-23 Meir Eini Tetracycline management of egfr inhibitor associated dermatoses
WO2017089809A1 (en) 2015-11-24 2017-06-01 Hovione Scientia Limited Salts of tetracyclines
US10398641B2 (en) 2016-09-08 2019-09-03 Foamix Pharmaceuticals Ltd. Compositions and methods for treating rosacea and acne
US20180064638A1 (en) 2016-09-08 2018-03-08 Foamix Pharmaceuticals Ltd. Compositions and methods for treating rosacea and acne
WO2019082090A1 (en) 2017-10-24 2019-05-02 Glenmark Pharmaceuticals Limited Topical pharmaceutical composition of adapalene and minocycline

Non-Patent Citations (431)

* Cited by examiner, † Cited by third party
Title
"Everything but the Olive." The Olive Oil Source 1998-2016 [online]. Retrieved from the Internet: http://www.oliveoilsource.com/pageA chemical-characteristics.
"Suppositories?" CareCure Community, SCI Forum [online]. http://sci.rutgers.edu/forum/showthread.php?4176-Suppositories. Published: Apr. 16, 2002, 3 pages.
1058. Benzalkonium Chloride; 2350. Citric Acid; 6143. Methyl Salicylate. The Merck Index: An Encyclopedia of Chemicals, Drugs, and Biologicals. 13th Edition, 2001, pp. 181, 405-406, 1090-1091, 1556.
242. Allantoin, The Merck Index: An Encyclopedia of Chemicals, Drugs, and Biologicals. 10th edition, Merck & Co., Inc., 1983, p. 39.
Abdullah, G.Z. et al. (Jan. 2013) "Carbopol 934, 940 and Ultrez 10 as viscosity modifiers of palm olein esters based nano-scaled emulsion containing ibuprofen" Pak J Pharm Sci, 26(1):75-83.
Abrams et al., "Ciclopirox gel treatment of scalp seborrheic dermatitis," in: Shuster, S. (ed.) Hydroxy-Piridones as Antifungal Agents with Special Emphasis on Onychomycosis. Springer, Berlin, Heidelberg; 1999, Chapter 8, pp. 45-50.
Adachi, "Storage and Oxidative Stability of O/W/ Nano-emulsions," Foods Food Ingredients J. Jpn., 2004, 209(11), 1 page. (Abstract).
Adisen et al., "Topical tetracycline in the treatment of acne vulgaris," J Drugs Dermatol., Oct. 2008, 7(10):953-955.
Alcohol SDA 40B, 200 Proof. Material Safety Data Sheets [online]. Retrieved from the Internet: http://www.pharmco-prod.com/pages/MSDS/SDA.sub.--40B.sub.--200.pdf, on Dec. 9, 2008. MSDS 044, Revision 2.1, Revision Date Dec. 2005, 2 pages.
Alcohol, Wikipedia, the free encyclopedia [online]. Last modified on Apr. 23, 2014. Retrieved on May 17, 2014, http://en.wikipedia.org/wiki/Alcohol, 17 pages.
Aldara™ (imiquimod) Cream. Highlights of Prescribing Information, Graceway Pharmaceuticals, LLC, Mar. 2007, 29 pages.
Allantoin, Römpp Online, retrieved on Sep. 23, 2015, https://roempp.thieme.de/roempp4.0/do/data/RD-O 1-01552, 5 pages.
Allen, The Art, Science, and Technology of Pharmaceutical Compounding, 2nd edition, pp. 250, 251, 263, 267-269, 287, 288, 301-305, tables 16-1 and 16-2 (2002).
Allen, The Art, Science, and Technology of Pharmaceutical Compounding, pp. 173-185 (1998).
Al-Mughrabi et al., "Effectiveness of Essential Oils and Their Combinations with Aluminum Starch Octenylsuccinate on Potato Storage Pathogens," TEOP, 2013, 16(1):23-31.
Ambrose et al., "In Vitro Studies of Water Activity and Bacterial Growth Inhibition of Sucrose-Polyethylene Glycol 400-Hydrogen Peroxide and Xylose-Polyethylene Glycol 400-Hydrogen Peroxide Pastes Used to Treat Infected Wounds," Antimicrobial Agents and Chemotherapy, Sep. 1991, 35(9):1799-1803.
Aminobenzoic Acid, Knovel, 2006, retrieved on Apr. 18, 2012, http://www.knovel.com/web/portal/knovel_content?p_p_id=EXT_KNOVEL_CONTENT . . . , 2 pages.
Ansel et al., Pharmaceutical Dosage Forms and Drug Delivery Systems, 7th ed., pp. 87-92, 250, 378-380, table 3.3 (1999).
Anton et al., "Water-in-oil nano-emulsion formation by the phase inversion temperature method: a novel and general concept, a new template for nanoencapsulation," Proceedings of the 33rd Annual Meeting and Exposition of the Controlled Release Society, Jul. 2006, Vienna, Austria, 2 pages.
Arct et al., "Common cosmetic hydrophilic ingredients as penetration modifiers of flavonoids," International Journal of Cosmetic Science, Dec. 2002, 24(6):357-366 (Abstract Only).
Arisan, Kozmetic ve Kisisel Bakim Urunleri Grubu, retrieved on Dec. 10, 2008, http://www.arisankimya.com/kozmetik.htm, 8 pages.
Arquad HTL8-MS, AkzoNobel Functional Applications, retrieved on Mar. 18, 2013, Retrieved from the Internet: <URL: http://sc.akzonobel.com/en/fa/Pages/product-detail.aspx?prodID=8764>, 1 page.
Aslam et al. (2015) "Emerging drugs for the treatment of acne" Expert Opin Emerging Drugs, 20:91-101.
Atopic Dermatitis/Eczema, ibabydoc.com, Copyright 2000, retrieved on Jan. 30, 2010, http://www.ibabydoc.com/online/diseaseeczema.asp 6 pages.
Attwood et al., Surfactant Systems: Their chemistry, pharmacy and biology, pp. 1-8 (1993).
Ausburger and Shangraw, "Bubble size analysis of high consistency aerosol foams and its relationship to foam rheology; Effects fo Container Emptying, Propellent Type, and Time," J. Pharma Sci, Apr. 1968, 57(4):624-631.
Austria, et al., "Stability of vitamin C derivatives in solution and topical formulations", Journal of Pharmaceutical and Biomedical Analysis, 1997, 15:795-801.
Barry and Badal, "Stability of minocycline, doxycycline, and tetracycline stored in agar plates and microdilution trays," Current Microbiology, 1978, 1:33-36.
Barry and Woodford, "Comparative bio-availability and activity of proprietary topical corticosteroid preparations: vasoconstrictor assays on thirty-one ointments," British J. Dermatology, 1975, 93:563-571.
Baskaran et al., "Poloxamer-188 improves capillary blood flow and tissue viability in a cutaneous burn wound," J. Surg. Res., 2001, 101(1):56-61.
Beauty Banter, "Interesting list of comedogenic ingredients!!!!!!!!!!!" QVC blog, Interesting list of comedogenic ingredients, 2014, 1-14.
Bell-Syer et al., "A systematic review of oral treatments for fungal infections of the skin of the feet," J. Dermatology. Treat., 2001, 12:69-74.
Ben-Et and Tatarsky "Application of NMR for the Determination of HLB Values of Nonionic Surfactants," Journal of the American Oil Chemists Society, Mar. 20, 1972, 49:499-500.
Bernstein and Harrison, "Effects of the Immunomodulating Agent R837 on Acute and Latent Herpes Simplex Virus Type 2 Infections," Antimicrobial Agents and Chemotherapy, Sep. 1989, 33(9):1511-1515.
Beuchat (Feb. 1983) "Influence of Water Activity on Growth, Metabolic Activities and Survival of Yeasts and Molds" J Food Prot, 46(2):135-141.
Blaney and Cook, "Topical use of tetracycline in the treatment of acne," Arch Dermatol, Jul. 1976, 112:971-973.
Blute et al., "Phase behaviour of alkyl glycerol ether surfactants", Physikalische Chemie/Physical Chemistry Tenside Surf. Det., 1998, 35(3):207-212.
Boehm et al., "Synthesis of high specific activity [.sup.3 H]-9-cis-retinoic acid and its application for identifying retinoids with unusual binding properties," J. Med. Chem., 1994, 37:408-414.
Bowles et al., "Protection against Minocycline Pigment Formation by Ascorbic Acid (Vitamin C)", Journal of Esthetic Dentistry, vol. 10/No. 4, pp. 182-186 (1998).
Brenes, et al., "Stability of Copigmented Anthocyanins and Ascorbic Acid in a Grape Juice Model System", J. Agric Food Chem, 2005, 53(1):49-56 (Abstract Only).
Brewer, "Gramicidin", 8 Profiles of Drug Substances, Excipients and Related Methodology, 43 pages (1979).
Brisaert, M. et al. (1996) "Investigation on the chemical stability of erythromycin in solutions using an optimization system" Pharm World Sci, 18(5):182-186.
BRONOPOL, 2-BROMO-2-NURO-1,3-PROPANEDIOL, Chemical land, Jul. 17, 2006, retrieved on Jun. 4, 2011, http://chemicalland21.com/specialtychem/perchem/BRONOPOL.html, 4 pages.
Brown et al., " Structural dependence of flavonoid interactions with Cu2+ ions: implications for their antioxidant properties," Biochem. J., 1998, 330:1173-1178.
Buck and Guth, "Treatment of Vaginal Intraepithelial Neoplasia (Primarily Low Grade) with Imiquimod 5% Cream", Journal of Lower Genital Tract Disease, 2003, 7(3):290-293.
Bucks et al., "Bioavailability of Topically Administered Steroids: A "Mass Balance" Technique," J. Investigative Dermatology, 1988, 91(1):29-33.
Bunker and Dowd, "Alterations in Scalp Blood Flow after the Epicutaneous Application of 3% Minoxidil and 0.1% Hexyl Nicotinate in Alopecia," British Society for Investigative Dermatology, Sep. 1986, 117(5):668-669.
Burn Patients Need Vitamin D Supplements, NUTRAingredients.com, Jan. 23, 2004, retrieved on May 5, 2010, http://www.nutraingredients.com/Research/Burn-patients-need-vitamin-D-supplements, 1 page.
Burton and Marshall, "Hypertrichosis due to minoxidil," British J. Dermatology, 1979, 101:593-595.
C12-15 Alkyl Benzoate, Paula's Choice Skincare, retrieved on Oct. 24, 2010, http://ww.cosmeticscop.com/cosmetic-ingredient-dictionary/definition/259/c12-15-alkyl-benzoate.aspx, 1 page.
Calvert, "Foam in Motion", Foams: Physics, Chemistry and Structure, pp. 27-37 (1989).
Campos and Silva, "Ascorbic Acid and Its Derivatives in Cosmetic Formulations", Cosmetics and Toiletries, 2000, 115(6):59-62 (Abstract Only.
Can Tuberous Sclerosis Be Prevented?, Sharecare, 2002, retrieved on Aug. 29, 2013, <URL: http://www.sharecare.com/health/autosomal-dominant-genetic-disorders/can-tuberous-sclerosis-be-prevented;jsessionid=850579B60520A907DE75930E061E60E6>, 2 pages.
Canavan et al. (2016) "Optimizing Non-Antibiotic Treatments for Patients with Acne: A Review" Dermatol Ther, 6:555-578.
Carapeti et al., "Topical diltiazem and bethanechol decrease anal sphincter pressure and heal anal fissures without side effects," Dis Colon Rectum, 2000, 43(10):1359-1362.
Carbowax 1000MSDS, Material Safety Data Sheet for Polyethylene glycol 1000 MSDS, last updated Nov. 6, 2008, retrieved on Dec. 13, 2008, http://www.sciencelab.com/xMSDS-Polyethylene.sub.-glycol.sub.-1000-9926-622, 6 pages.
Carelli et al., "Effect of Vehicles on Yohimbine Permeation Across Excised Hairless Mouse Skin", Pharm Acta Helv, Aug. 1978, 73(3):127-134 (Abstract Only).
Causes of Psoriasis, retrieved on Sep. 9, 2010, http://www.quickcare.org/skin/causes-of0psoriasis.html, 3 pages.
Cetearyl Alcohol, Natural Wellbeing, Copyright 2001-2012, retrieved on Apr. 10, 2014, http://www.naturalwellbeing.com/learning-center/Cetearyl_Alcohol, 3 pages.
Chebil et al., "Solubility of Flavonoids in Organic Solvents," J. Chem. Eng. Data, 2007, 52(5):1552-1556 (Abstract Only).
Chemical Characteristics, The Olive Oil Source, ©1998-2015, retrieved on Jun. 12, 2015, http://www.oliveoilsource.com/page/chemical-characteristics, 10 pages.
Cheshire and Freeman, "Disorders of Sweating," Semin Neurol, 2003, 23(4):399-406.
Chevrant-Breton et al., "Etude du Traitement Capillaire <<Bioscalin>> dans les Alopecies Diffuses de la Femme", Gazette Medicale, 1986, 93(17):75-79 (English Abstract).
Chiang et al., "Bioavailability Assessment of Topical Delivery Systems: In Vitro Delivery of Minoxidil from Prototypical Semi-Solid Formulations", Int. J. Pharm, 1989, 49(2):109-114 (Abstract Only).
Chinnian et al., "Photostability Profiles of Minoxidil Solutions", PDA J. Pharm Sci Technol., Mar.-Apr. 1996, 50(2):94-98 (English Abstract).
Chollet et al., "Development of a Topically Active Imiquimod Formulation", Pharmaceutical Development and Technology, 1999, 4(1):35-43.
Chollet et al., "The Effect of Temperatures on the Solubility of Imiquimod in Isostearic Acid", Abstract 3031, Pharmaceutical Research, Nov. 1997, 14(11 Supplemental):S475.
Chrysos et al., "Effect of nifedipine on rectoanal motility," Dis Colon Rectum, Feb. 1996, 39(2):212-216.
Clobetasol Propionate Cream and Ointment, Apr. 2006, retrieved Jul. 3, 2014, http://dailymed.nlm.nih.gov/dailymed/archives/fdaDrugInfo.cfm?archiveid=994, 7 pages.
Cloez-Tayarani et al., "Differential effect of serotonin on cytokine production in lipopolysaccharide-stimulated human peripheral blood mononuclear cells: involvement of 5-hydroxytryptamine2A receptors," Int. Immunol., 2003, 15:233-240.
Coal Tars and Coal-Tar Pitches, Report on Carcinogens, Twelfth Edition, 2011, 3 pages.
Coatzee et al., "Acceptability and feasibility of Micralax® applicators and of methyl cellulose gel placebo for large-scale clinical trials of vaginal microbicides," AIDS, 2001, 15:1837-1842.
Coconut Oil, Wikipedia, the free encyclopedia, retrieved on Jul. 3, 2015, https://en.wikipedia.org/wiki/Coconut_oil, 8 pages.
Codex Standard for Olive Oils and Olive Pomace Oils Codex Stan 33/1981, Adopted in 1981, recently amended 2013, 8 pages.
Cole and Gazewood, "Diagnosis and Treatment of Impetigo," American Family Physical Website, 2007, http://www.aafp.org/afp, 6 pages.
Colloidal Silica, W.R. Grace & Co. Enriching Lives, Everywhere™, 2011, retrieved on Jun. 4, 2011, http://www.grace.com/engineeredmaterials/materialsciences/colloidalsilica/default.aspx, 4 pages.
Communication of a Notice of Opposition in European Application No. 03772600.7, dated Jan. 13, 2015, 36 pages.
Cook and Mortenson, "Nifedipine for treatment of anal fissures," Dis Colon Rectum, 2000, 43(3):430-431.
Craig, D.Q.M. et al. (Jul. 1994) "An investigation into the structure and properties of Carbopol 934 gels using dielectric spectroscopy and oscillatory rheometry" J Controlled Rel, 30(3):213-223 (Abstract).
Cremophor A Grades, BASF the Chemical Company, Jan. 2008, 6 pages.
Croda Crop Care, Arlacel 165, 2011, retrieved on Aug. 3, 2015, http://www.crodapersonalcare.com/home.aspx?view=dtl&d=content&s=157&r=401&p=2578&productName=&inciname=&application=&subapplication=&productfunction=&consumerbenefit=&prodID=1926, 2 pages.
Croda Product Care Europe, Cetomacrogol 1000, 2011, retrieved on Aug. 3, 2015, http://www.crodapersonalcare.com/home.aspx?view=dtl&d=content&s=157&r=273&p=1859&productName=&in ciname=&chemicaltype=&application=&subapplication=&productfunction=&consumerbenefit=&prodID=27, 1 page.
Crohn's Disease, Merck Manual Home Edition, retrieved on Jan. 16, 2013, <http://www.merckmanuals.com/home/digestive_disorders/inflammatory_bowel_diseases_ibd/crohn_disease.html?qt=crohn's disease&alt=sh>, 3 pages.
Cunha, "Minocycline versus Doxycycline in the treatment of Lyme Neuroborreliosis," Clin. Infect. Diseases, 2000, 30: 237-238.
Dacarbazine, Chemical Book, 2010, retrieved on Oct. 18, 2013, <URL: http://www.chemicalbook.com/ChemicalProductProperty_EN_CB7710656.htm>, 2 pages.
Dalby et al., "Determination of Drug Solubility in Aerosol Propellants," Pharmaceutical Research, 1991, 8(9):1206-1209.
Dawber and Rundegren, "Hypertrichosis in Females Applying Minoxidil Topical Solution and in Normal Controls", JEADV, 2003, 17:271-275.
Declaration Pursuant to 37 C.F.R. §1.132 of Dr. Mohammad Salman, dated Dec. 28, 2015, filed in U.S. Appl. No. 14/074,868.
Declaration Pursuant to 37 C.F.R. §1.132 of Dr. Mohammad Salman, dated Jul. 19, 2016, filed in U.S. Appl. No. 14/074,868.
Declaration Pursuant to 37 C.F.R. §1.132 of Dr. Mohammad Salman, dated May 19, 2016, filed in U.S. Appl. No. 14/074,868.
Denatonium Benzoate, retrieved Dec. 9, 2008, http://www.newdruginfo.com/pharmaceopeia/usp28/v28230/usp28nf23s0_m-22790.htm, 2 pages.
Dentinger, et al., "Stability of Nifedipine in an Extemporaneously Compounded Oral Solution", American Journal of Health-System Pharmacy, 2003, 60(10):1019-1022 (English Abstract).
Derivative, Merriam Webster Online Dictionary, retrieved on Jul. 5, 2008, http://www.merriam-webster.com/cgi-bin/dictionary?book=dictionary&va=derivative, 1 page.
Devos and Miller, "Antisense Oligonucleotides: Treating neurodegeneration at the Level of RNA," Neurotherapeutics, 2013, 10:486-497.
Diethyltoluamide, Wikipedia, the free encyclopedia, retrieved on Sep. 11, 2015, http://de.wikipedia.org/wiki/Diethyltoluamid, 12 pages.
Dimethylphthalate, Wikipedia, the free encyclopedia, retrieved on Sep. 11, 2015, http://de.wikipedia.org/wiki/Dimethylphthalat, 8 pages.
Disorder, American Heritage Dictionary of the English Language, 2007, retrieved on Oct. 9, 2010, http://www.credoreference.com/entry/hmdictenglang/disorder, 1 page.
Donnelly et al., Novel Delivery Systems for Transdermal and Intradermal Drug Delivery, p. 103.
Draelos, "Antiperspirants and the Hyperhidrosis Patients," Dermatologic Therapy, 2001, 14:220-224.
Drug Index-Dacarbazine, BC Cancer Agency, Jun. 2004, retrieved on Oct. 18, 2013, <URL:http://www.bccancer.bc.ca/HPI/DrugDatabase/DrugIndexPro/Dacarbazine.htm>, 6 pages.
Drug Index—Dacarbazine, BC Cancer Agency, Jun. 2004, retrieved on Oct. 18, 2013, <URL:http://www.bccancer.bc.ca/HPI/DrugDatabase/DrugIndexPro/Dacarbazine.htm>, 6 pages.
Drugfuture, Chemical Index Database, "Sorbitan Esters" Monograph [online]. Retrieved from: http://www.drugfuture.com/chemdata/sorbitan-esters.html, on Jul. 1, 2016, 2 pages.
Durian et al., "Scaling behavior in shaving cream," The American Physical Society, Dec. 1991, 44(12):R7902-7905.
Durmortier et al., "A review of poloxamer 407 pharmaceutical and pharmacological characteristics," Pharmaceutical Res., Dec. 2006, 23(12):2709-2728.
E7023 Ethanol 200 Proof (Absolute), Sigma-Aldrich Co., © 2008, retrieved on Dec. 9, 2008, http://www.sigmaaldrich.com/catalog/ProductDetail.do?N4=E7023SIAL&N5=SEAR- CH.sub.--CONCAT.sub.--PNOBRAND.sub.--KEY&F=SPEC, 2 pages.
Ebadi et al., "Healing effect of topical nifedipine on skin wounds of diabetic rats," DARU, 2003, 11(1):19-22.
Edens et al., "Storage Stability and Safety of Active Vitamin C in a New Dual-Chamber Dispenser", Journal of Applied Cosmetology, 1999, 17(4):136-143 (English Abstract).
Edirisinghe et al., "Effect of fatty acids on endothelium-dependent relaxation in the rabbit aorta", Clin Sci, Aug. 2006, 111(2): 145-51.
Edwards, "Imiquimod in Clinical Practice," J. Am Acad Dermatol., Jul. 2000 43(1, Pt 2):S12-S17 (English Abstract).
Effendy and Maibach "Surfactants and Experimental Irritant Contact Dermatitis." Contact Dermatol., 1995, 33:217-225.
Elias and Ghadially, "The aged epidermal permeability barrier," Clinical Geriatric Medicine, Feb. 2002, 103-120.
Ellis et al., "The Treatment of Psoriasis with Liquor Carbonis Detergens," J. Invest Dermatology, 1948, 10:455-459.
Emulsifiers With HLB Values, The Herbarie, retrieved on Aug. 5, 2009, http://www.theherbarie.com/files/resources-center/formulating/Emulsifiers- .sub.--HLB.sub.--Values.pdf, 3 pages.
Esposito et al., "Nanosystems for Skin Hydration: A Comparative Study," International Journal of Cosmetic Science, 2007, 29: 39-47.
Established ("Approved") Excipients, Encyclopedia of Pharmaceutical Technology, Second Edition, © 2002, vol. 3, 2146-2147.
Ethylene Oxide Derivatives: An Essence of Every Industry, retrieved on Jul. 12, 2011, http://www.emulsifiers.in/ethylene_oxide_derivatives2.htm, 3 pages.
European Patent Application No. 03772600.7 (Patent No. 1556009): Communication of a Notice of Opposition, dated Sep. 23, 2015, 42 pages.
European Patent Application No. 03772600.7 (Patent No. 1556009): Communication of a Notice of Opposition. dated Sep. 24, 2015, 30 pages.
European Patent Application No. 03772600.7 (Patent No. 1556009): Interlocutory Decision in Opposition Proceedings, dated Feb. 3, 2017, 54 pages.
European Patent Application No. 03772600.7 (Patent No. 1556009): Minutes of Oral Proceedings, dated Feb. 3, 2017, 6 pages.
European Patent Application No. 03772600.7 (Patent No. 1556009): Reply of the Patent Proprietor to the Notices of Opposition, dated May 9, 2016, 134 pages.
European Patent Application No. 03772600.7 (Patent No. 1556009): Summons to Attend Oral Proceedings, dated Jun. 30, 2016, 19 pages.
Excessive Sweating, Merck Manual Home Edition, Oct. 2007, retrieved on Apr. 14, 2011, www.merckmanuals.com/home/print/sec18/ch206/ch206c.html, 2 pages.
Fantin et al., "Critical influence of resistance to streptogramin B-type antibiotics on activity of RP 59500 (Quinupristin-dalfopristin) in experimental endocarditis due to Staphylococcus aureus,"Antimicrob Agents and Chemothery, Feb. 1995, 39:400-405.
Farahmand et al., "Formulation and Evaluation of a Vitamin C Multiple Emulsion", Pharmaceutical Development and Technology, May 2006, 11(2):255-261 (English Abstract).
Flick, Cosmetic and Toiletry Formulations, 2nd Edition, Copyright 1996, vol. 5, 251-309.
Floyd, "Silicone Surfactants: Applicants in the Personal Care Industry," Silicone Surfactants, 1999, Chapter 7, 181-207.
Fluhr et al., "Glycerol accelerates recovery of barrier function in vivo," Acta Derm. Venereol, 1999, 79:418-421.
Foamix Pharmaceuticals LTD. (May 1, 2017) "Foamix Pharmaceuticals Announces Plans for Additional Phase 3 Trial for FMX101 in Moderate to Severe Acne," Press Release [online]. Retrieved from: http://www.foamix.co.il/news.asp?nodeID=564&itemID=204, on Jun. 12, 2017, 5 pages.
Foamix Pharmaceuticals, Statement: Use of LUVIQUAT FC 370, Approved by Yohan Hazot, May 3, 2016, 3 pages.
Fontana (Apr. 1999) "Pharmaceutical Applications for Water Activity" Pharmaceutical Online [online]. Retrieved from https://www.pharmaceuticalonline.com/doc/pharmaceutical-applications-for-water-activit- . . . , on Jan. 17, 2018 (4 pages).
Fontana, "Water Activity: Why It is Important for Food Safety," International Conference on Food Safety, Nov. 16-18, 1998, 177-185.
Frankel, A.J. et al. (2010) "Coal Tar 2% Foam in Combination with a Superpotent Corticosteroid Foam for Plaque Psoriasis. Case Report and Clinical Implications" J Clin Aesthet Dermatol, 3(10):42-45.
Fully-Refined Paraffin Wax (FRP Wax), Industrial Raw Materials LLC, Feb. 21, 2008, retrieved on Aug. 22, 2013, <http://irmwax.com/Wax/Paraffin/fully_refined.asp> 1 page.
Gallarate et al., "On the Stability of Ascorbic Acid in Emulsified Systems for Topical and Cosmetic Use", International Journal of Pharmaceutics, 1999, 188:233-241.
Galligan et al., "Adhesive Polyurethane Liners for Anterior Restorations," J. Dent. Res., Jul.-Aug. 1968, 629-632.
Garti et al. "Sucrose Esters microemulsions," J. Molec. Liquids, 1999, 80:253-296.
Gas Gangrene, Merck Manual Home Edition, 2008, retrieved on Jan. 16, 2013, <http://www.merckmanuals.com/home/infections/bacterial_infections/gas_gangrene.html?qt=gas gangrene&alt=sh>1 page.
Gelbard et al. "Primary Pediatric Hyperhidrosis: A Review of Current Treatment Options," Pediatric Dermatology, 2008, 25(6):591-598.
Gels, Unc: The Pharmaceutics and Compounding Laboratory, retrieved on Aug. 25, 2014, http://pharmlabs.unc.edu/labs/gels/agents/htm, 4 pages.
Ghica, M.V. et al. (2011) "Design and optimization of some collagen-minocycline based hydrogels potentially applicable for the treatment of cutaneous wound infections" Pharmazie, 66:853-861.
Gill et al., "Adverse Drug Reactions in a Paediatric Intensive Care Unit," Acta Paediatric, 1995, 84:438-441.
Gladkikh, "Ascorbic Acid and Methods of Increasing its Stability in Drugs", Translated from Khimiko-Farmatsevticheskii Zhurnal, 1970, 4(12):37-42.
Glaser and Ballard, "Hyperhidrosis: A Comprehensive and Practical Approach to Patient Management," Expert Rev. Dermatol., Oct. 2006, 1(6):773-775.
Google Search Strategy for Minocycline Solubility, retrieved on Aug. 15, 2013, <http://www.googl.com/search?rls=com.microsoft%3Aen-us%3AIE-SearchBox&q-melocyc1ine+solubility>, 1 page.
Graves et al., "Structure of Concentrated Nanoemulsions," The Journal of Chemical Physics, Apr. 1, 2005, 122:134703, 6 pages.
Griffin, "Calculation of HLB Values of Non-Ionic Surfactants," Journal of the Society of Cosmetic Chemists, May 14, 1954, 249-256.
Groveman et al., "Lack of Efficacy of Polysorbate 60 in the Treatment of Male Pattern Baldness", Arch Intern Med, 1985, 145:1454-1458.
Gschnait et al., "Topical Indomethacin Protects from UVB and UVA Irradiation," Arch. Dermatol. Res., 1984, 276:131-132.
Hakan et al., "The protective effect of fish oil enema in acetic acid and ethanol induced colitis," The Turkish Journal of Gastroenterology, 2000, 11(2):155-161.
Hall, "Diaper Area Hemangiomas: A Unique Set of Concerns," retrieved on Dec. 1, 2008, http://members.tripod.com/.about.Michelle.sub.--G/diaper.html, 8 pages.
Hallstar® GMS SE/AS, retrieved on Jun. 4, 2011, http://www.hallstar.com/pis.php?product=1H022, 1 page.
Hammer et al., "Anti-Microbial Activity of Essential Oils and other Plant extracts," J. Applied Microbiology, 1999, 86:985-990.
Hanasono et al., "The Effect of Silicone Gel on Basic Fibroblast Growth Factor Levels in Fibroblast Cell Culture", Arch Facial Plast Surg, vol. 6, pp. 88-23 (2004).
Handbook of Pharmaceutical Excipients 79, 85, 215, 336, 386, 443, 568, 599 (Arthur H. Kibbe ed., 2000).
Hargreaves, "Chemical Formulation, An Overview of Surfactant-Based Preparations Used in Everyday Life", The Royal Society of Chemistry, 2003, 114-115.
Harrison et al., "Effects of cytokines and R-837, a cytokine inducer, on UV-irradiation augmented recurrent genital herpes in guinea pigs", Antiviral Res., 1991, 15(4):315-322.
Harrison et al., "Modification of Immunological Responses and Clinical Disease During Topical R-837 Treatment of Genital HSV-2 Infection," Antiviral Research, 1988, 10:209-224.
Harrison et al., "Pharmacokinetics and Safety of Imiquimod 5% Cream in the Treatment of Actinic Keratoses of the Face, Scalp, or Hands and Arms", Arch. Dermatol. Res., Jun. 2004, 296(1):6-11 (English Abstract).
Harrison et al., "Posttherapy Suppression of Genital Herpes Simplex Virus (HSV) Recurrences and Enhancement of HSV-Specific T-Cell Memory by Imiquimod in Guinea Pigs", Antimicrobial Agents and Chemotherapy, Sep. 1994, 38(9):2059-2064.
Harry, "Skin Penetration," The British Journal of Dermatology and Syphilis, 1941, 53:65-82.
Hashim et al., "Tinea versicolor and visceral leishmaniasis," Int J Dermatol., Apr. 1994; 33(4):258-259 (Abstract).
Haute.DE, "Substance (INCI-Designation): Triethanolamine" [online]. Retrieved on Sep. 14, 2015, http://www.haut.de/service/inci/anzeige&id=I6384&query=Triethanolamine&funktio . . . ; German with English translation, 3 pages.
Haw, "The HLB System: A Time Saving Guide to Surfactant Selection," Presentation to the Midwest Chapter of the Society of Cosmetic Chemists, Mar. 9, 2004, 39 pages.
Healy et al., "Acne vulgaris", Br. Med. J., 308: 831-833, 831 (1994).
Healy, "Gelled Emollient Systems for Controlled Fragrance Release and Enhanced Product Performance," Cosmetics and toiletries, 2002, 117(2): 47-54.
Heart Failure, The Merck Manual, 2008, retrieved Oct. 9, 2010, http://www.merck.com/mmhe/sec03/ch025/ch025a.html, 12 pages.
Helmenstine, "Surfactant Definition-Chemistry Glossary Definition of Surfactant," About.com Chemistry, retrieved on Mar. 5, 2012, http://chemistry.about.com/od/chemistryglossary/g/surfactant.htm, 1 page.
Helmenstine, "Surfactant Definition—Chemistry Glossary Definition of Surfactant," About.com Chemistry, retrieved on Mar. 5, 2012, http://chemistry.about.com/od/chemistryglossary/g/surfactant.htm, 1 page.
Hepburn, "Cutaneous leishmaniasis," Clin Exp Dermatol, Jul. 2000, 25(5):363-370 (Abstract).
HLB Systems, Pharmcal.tripod.com, retrieved on Sep. 17, 2010, http://pharmcal.tripod.com/ch17.htm, 3 pages.
HLB-Numbers, Sigma Aldrich, 2009, retrieved on Feb. 2, 2009, http://www.sigmaaldrich.com/materials-science/micro-and-nanoelectronics/I- ithography-nanopatterning/hlb-numbers.html, 3 pages.
How to Have a Healthy Libido in Mid-Life and Beyond, GreenWillowTree.com, Jan. 2001, retrieved on Jul. 28, 2012, http://www.greenwillowtree.com/Page.bok?file=libido.html, 5 pages.
Hubbe, Colloidal Silica, Mini-Encyclopedia of Papermaking Wet-End Chemistry: Additives and Ingredients, their Composition, Functions, Strategies for Use, Feb. 1, 2001, retrieved on Jun. 4, 2011, http://www4.ncsu.edu/˜hubbe/CSIL.htm, 2 pages.
Human Immunodeficiency Virus Infection, Merck Manual Home Edition, 2008, retrieved on Jan. 16, 2013, <http://www.merckmanuals.com/home/infections/human_immunodeficiency_virus_hiv_infection/human_immunodeficiency_virus_infection.html?qt=human immunodeficiency virus infection&alt=sh >, 11 pages.
Hwang et al., "Isolation and identification of mosquito repellents in Artemisia vulgaris,"J. Chem. Ecol., 1985, 11: 1297-1306.
ICI Americas Inc., "Meaning of HLB Advantages and Limitations" Chapter 1 in The HLB System. A Time-Saving Guide to Emulsifier Selection. Wilmington, Delaware: 1980; pp. 1-4.
Ikuta et al., "Scanning Electron Microscopic Observation of Oil/Wax/Water/Surfactant System", Journal of SCCJ, 2004, 34(4):280-291 (English Abstract).
Indomethacin, Aug. 15, 2009, retrived on Jun. 3, 2011, http://it03.net/com/oxymatrine/down/1249534834.pdf, 3 pages.
Innocenzi et al., "An Open-Label Tolerability and Effacy Study of an Aluminum Sesquichlorhydrate Topical Foam in Axillary and Palmar Primary Hyperhidrosis," Dermatologic Therapy, 2008, 21:S27-S30.
Izquierdo et al. "Formation and Stability of Nano-Emulsions Prepared Using the Phase Inversion Temperature Method," Langmuir, 2002, 18(1):26-30 (Abstract).
Jan, "Troubled Times: Detergent Foam," retrieved on Feb. 9, 2012, http://zetatalk.com/health/theal17c.htm, 2 pages.
Johns Hopkins on Acne https://www.hopkinsmedicine.org/health/conditions-and-diseases/acne, 6 pages, 2019.
Joseph, "Understanding foams & foaming," University of Minnesota, May 1997, http://www.aem.umn.edu/people/faculty/joseph/archive/docs/understandingfoams.pdf, 8 pages.
Kalkan et al., "The Measurement of Sweat Intensity Using a New Technique," Tr. J. of Medical Sciences, 1998, 28:515-517.
Kanamoto et al., "Pharmacokinetics of two rectal dosage forms of ketoprofen in patients after anal surgery," J Pharmacobiodyn., Mar. 1988, 11(3):141-145.
Kang et al., "Enhancement of the Stability and Skin Penetration of Vitamin C by Polyphenol", Immune Netw., Dec. 2004, 4(4):250-254 (English Abstract).
Kanicky, J.R. and D.O. Shah (2002) "Effect of Degree, Type, and Position of Unsaturation on the pKa of Long-Chain Fatty Acids" J Colloid and Interface Science, 256:201-207.
Kanwar et al., "Treatment of Melasma with Potent Topical Corticosteroids", Dermatology, 188(2):170 (1994). 188(2):170.
Karasu et al., "Practice Guideline for the Treatment of Patients with Major Depressive Disorder," Second Edition, Apr. 2000, 78 pages.
Kathon™ CG, Rohm and Haas Personal Care, Jun. 2006, 9 pages.
Kaur et al., "Formulation Development of Self Nanoemulsifying Drug Delivery System (SNEDDS) of Celecoxib for Improvement of Oral Bioavailability," Pharmacophore, 2013, 4(4):120-133.
Kim, "Stability of Minoxidil in Aqueous Solution", Yakhak Hoechi, 1986, 30(5):228-231 (English Abstract).
Kinnunen and Hannuksela, "Skin reactions to hexylene glycol," Contact Dermatitis, Sep. 1989, 21(3):154-158.
Kircik et al., " Formulation and Profile of FMX101 4% Minocycline Topical Foam for the Treatment of Acne Vulgaris," J. Clin. Aesthet. Dermatol., 13(4): 14-21 (2020).
Kircik, L.H. and S. Kumar (Aug. 2010) "Scalp Psoriasis" J Drugs Dermatol, 9(8 Suppl):s101-s137.
Kleber et al., "Practice Guideline for the Treatment of Patients with Substance Use Disorders," Aug. 2006, 276 pages.
Klucel Hydroxypropylcellulose; Chemical and Physical Properties, Hercules Limited, copyright 1986, retrieved on Aug. 25, 2014, http://legacy.library.ucsf.edu/tid/cnf81a99/pdf, 35 pages.
Knight et al., "Topical diltiazem ointment in the treatment of chronic anal fissure," Br. J. Surg., 2001, 88(4):553-556.
Koerber, "Humectants and Water Activity," Water Activity News, 2000, 8 pages.
Kolb, "Emulsifiers, emollients and solubilizers for personal care", pp. 1-9, accessed Jun. 20, 2018.
Kreuter, "Nanoparticles and microparticles for drug and vaccine delivery," J. Anat., 1996, 189:503-505.
Kucharekova et al., "Effect of a lipid-rich emollient containing ceramide 3 in experimentally induced skin barrier dysfunction," Contact Dermatitis, Jun. 2002, 46:331-338.
Kumar et al., "Application of Broad Spectrum Antiseptic Povidone Iodine as Powerful Action: A Review," Journal of Pharmaceutical Science and Technology, 2009, 1(2):48-58.
Kwak et al. "Study of Complete Transparent Nano-Emulsions which Contain Oils." IFSCC Conference, Seoul Korea, Sep. 2003, 3 pages.
Laboratory 6-Characteristics of Surfactants and Emulsions, retrieved on Jan. 29, 2010, http://web.archive.org/web/20000106225413/http://pharmacy.wilkes.edu/kibbeweb/lab7.html, 5 pages.
Laboratory 6—Characteristics of Surfactants and Emulsions, retrieved on Jan. 29, 2010, http://web.archive.org/web/20000106225413/http://pharmacy.wilkes.edu/kibbeweb/lab7.html, 5 pages.
Lautenschlager, "A Closer Look on Natural Agents: Facts and Future Aspects," Kosmetic Konzept Kosmetische Praxis, 2006, 5:8-10.
Le Vine et al., "Components of the Goeckerman Regimen," Journal of Investigative Dermatology, 1979, 73:170-173.
Lebwohl and Ali, "Treatment of psoriasis. Part 1. Topical therapy and phototherapy," J. Am Acad Dermatol, Oct. 2001, 487-498.
Lebwohl et al., "A randomized, double-blind, placebo-controlled study of clobestasol propionate 0.05% foam in the treatment of nonscalp psoriasis," International Journal of Dermatology, 2002, 41(5): 269-274.
Lee et al., "Historical review of melanoma treatment and outcomes," Clinics in Dermatology, 2013, 31: 141-147.
Lee et al., "The Stabilization of L-Ascorbic Acid in Aqueous Solution and Water-in-Oil-in-Water Double Emulsion by Controlling pH and Electrolyte Concentration," J. Cosmet. Sci., Jan./Feb. 2004, 55:1-12.
Leive et al., "Tetracyclines of various hydrophobicities as a probe for permeability of Escherichia coli outer membrane," Antimicrobial Agents and Chemotherapy, 1984, 25:539-544.
Leunapon-F, Leuna-Tenside, Screenshot, retrieved on Sep. 18, 2015, http://www.leuna-tenside.de/2006_7_14_3143/2006_8_7 5750/2006_8_7 241/cas-68439-49-6, 1 page.
Leung and Robinson, "Bioadhesive Drug Delivery," American Chemical Society, 1991, Chapter 23, 350-366.
Li et al., "Solubility Behavior of Imiquimod in Alkanoic Acids", Pharmaceutical Research, Abstract 3029, Nov. 1997,14(11):S475, 2 pages.
Licking Vaginal Dryness Without a Prescription, retrieved on Dec. 14, 2008, http://www.estronaut.com/a/vag.sub.--dryness.htm, 3 pages.
Lin et al., "Ferulic acid stabilizes a solution of vitamins c and e and doubles its photoprotection of skin," J Invest Dermatol, 2005, 125:826-832.
Lippacher et al., "Liquid and Semisolid SLN Dispersions for Topical Application: Rheological Characterization," European Journal of Pharmaceutics and Biopharmaceutics, 2004, 58:561-567.
Livingstone and Hubel, "Segregation of form, color, movement, and depth: Anatomy, physiology, and perception," Science, May 1988, 240:740-749.
Lupke and Kemper, "The HET-CAM Test: An Alternative to the Draize Eye Test," FD Chem. Toxic., 1986, 24:495-196.
Lupo, "Antioxidants and Vitamins in Cosmetics", Clinics in Dermatology, 2001, 19:467-473.
Luviquat Polymer Grades, BASF The Chemical Company, May 2012, 32 pages.
Mah et al., "Irrational Use of Skin-Bleaching Products Can Delay the Diagnosis of Leprosy", International Journal of Leprosy and Other Mycobacterial Diseases, vol. 70, No. 2, pp. 119-121 (2002).
Mailer, "Chemistry and quality of olive oil," NSW Dept. of Primary Industries, Aug. 2006, Primefact 227, 1-4.
Martindale: The Complete Drug Reference, 33rd Edition, Jun. 2002, Pharmaceutical Press, pp. 1073 and 1473.
Martindale: The Complete Drug Reference, Thirty-third edition, Bath Press, London, 2002, 1073 and 1473.
Martindale: The Extra Pharmacopoeia, Twenty-eighth edition, The Pharmaceutical Press, London, 1982, 862-864.
Material Safety Data Sheet, Butane, Gas Innovations, Sep. 7, 2007, 3 pages.
Material Safety Data Sheet, Carbon Dioxide, Airgas, Feb. 11, 2016, 11 pages.
Material Safety Data Sheet, Dimethyl Ether, Airgas, May 14, 2015, 12 pages.
Material Safety Data Sheet, Hydroxyethyl Cellulose, Sigma-Aldrich, Jan. 14, 2004, http://terpconnect.umd.edu/-choi/MSDS/Sigma-Aldrich/Hydroxyethyl%20CELLULOSE, 5 pages.
Material Safety Data Sheet, Hydroxyethyl Cellulose, Sigma-Aldrich, Jan. 2004, 5 pages.
Material Safety Data Sheet, Liquor carbonis detergens, Caelo, Nov. 28, 2013, 5 pages.
Material Safety Data Sheet, Luvitol EHO, Caelo, Nov. 28, 2013, 4 pages.
Material Safety Data Sheet, Mineral Oil, Macron Fine Chemicals, Oct. 24, 2011, 6 pages.
Material Safety Data Sheet, N-Butane, Airgas, May 7, 2015, 13 pages.
Material Safety Data Sheet, Nitrous Oxide, Airgas, Feb. 11, 2016, 11 pages.
Material Safety Data Sheet, Propane, Airgas, Oct. 20, 2015, 12 pages.
Material Safety Data Sheet, Science Lab.com, Polyethylene Glycol 200, MSDS, Nov. 6, 2008, 6 pages.
Material Safety Data Sheet, USP, Progesterone, Apr. 26, 2006, 5 pages.
McKetta, Encyclopedia of Chemical Processing and Design: vol. 2-Additives to Alpha, 1st Ed., pp. 214-238 (1977).
McKetta, Encyclopedia of Chemical Processing and Design: vol. 2—Additives to Alpha, 1st Ed., pp. 214-238 (1977).
Mead, "Electrostatic Mechanisms Underlie Neomycin Block of the Cardiac Ryanodine Receptor Channel (RyR2)," Biophysical Journal, 2004, (87): 3814-3825.
Messenger et al., "Minoxidil: Mechanisms of Action on Hair Growth", British Journal of Dermatology, 2004, 150:186-194.
Metronidazole (Veterinary-Systemic), The United States Pharmacopeial Convention, 2007, retrieved on Sep. 10, 2009, www.usp.org/pdf/EN/veterinary/metronidazole.pdf, 4 pages.
Metronidazole (Veterinary—Systemic), The United States Pharmacopeial Convention, 2007, retrieved on Sep. 10, 2009, www.usp.org/pdf/EN/veterinary/metronidazole.pdf, 4 pages.
Metz et al., "A Phase I Study of Topical Tempol for the Prevention of Alopecia Induced by Whole Brain Radiotherapy," Clinical Cancer Research, Oct. 2004, 10:6411-6417.
Meucci et al., "Ascorbic Acid Stability in Aqueous Solutions", Acta Vitaminol Enzymol, 1985, 7(3-4):147-153 (English Abstact).
Milton, D.T. et al. (2006) "A Phase I/II Study of Weekly High-Dose Erlotinib in Previously Treated Patients With Nonsmall Cell Lung Cancer" Cancer, 107:1034-1041.
Mineral Oil USP, U.S. Department of Health & Human Services, Chemical Abstracts Service Registry No. 8012-95-1, 2011, 7 pages.
Minocycline (DB01017), Drug Bank, Feb 8, 2013, retrieved on Aug. 15, 2013, <htp://www.drugbank.ca/drugs/DB01017>, 10 pages.
Minocycline, Wikipedia, the free encyclopedia, retrieved on Oct. 21, 2011, http://en.wikipedia.org/wiki/Minocycline, 7 pages.
MMP Inc., International Development and Manufacturing, "Formulating specialties," retrieved on Feb. 2, 2010, http://mmpinc.com, 3 pages.
Molan, "World Wide Wounds: Honey as a topical antibacterial agent for treatment of infected wounds," Dec. 2001, retrieved May 7, 2008, http://www.worldwidewounds.com/2001/november/Molan/honey-as-topical-agent.html, 13 pages.
Molins PLC v. Textron Inc., 48 F.3d 1172, 33 USPQ2d 1823 (Fed. Cir. 1995), 19 pages.
Morgan et al., "Enhanced Skin Permeation of Sex Hormones with Novel Topical Spray Vehicles," Journal of Pharmaceutical Sciences, Oct. 1998, 87(10):1213-1218.
Mousse, Merriam-Webster Online Dictionary, retrieved on Dec. 8, 2008, http://www.merriam-webster.com/dictionary/mousse, 2 pages.
Musial, W. and A. Kubis (2004) "Carbopols as factors buffering triethanolamine interacting with artificial skin sebum" Polim Med, 34(4):17-30 (Abstract).
Natural Skincare Authority, "Disodium EDTA: Cosmetic Toxin Data," 2011, retrieved on Nov. 17, 2013, http://www.natural-skincare-authority.com/DISODIUM-EDTA.html, 4 pages.
Neutrogena Clinical SPF 30 Facial Lifting Wrinkle Treatment, Apr. 28, 2010, retrieved on Sep. 11, 2010, http://www.cosmetoscope.com/2010/04/neutrogea-clinical-with-johnson-johnsons-cytomimic-techology/, 5 pages.
Neves et al., "Rheological Properties of Vaginal Hydrophilic Polymer Gels," Current Drug Delivery, 2009, 6:83-92.
New Nanomaterials to Deliver Anticancer Drugs to Cells Developed, Science Daily, Jun. 2007, retrieved on Oct. 14, 2013, <URL: http://www.sciencedaily.com/releases/2007/06/070607112931.htm>, 3 pages.
Nietz, "Molecular orientation at surfaces of solids," J. Phys. Chem., 1928, 32(2): 255-269.
Niram Chemicals, Chemical products-Cetostearyl Alcohol, Cetyl Alcohol, Stearyl Alcohol and Polyethylene Glycol Importer & Supplier, retrieved on Jul. 17, 2012, http://www.indiamart.com/niramchemicals/chemicals.html, 7 pages.
Niram Chemicals, Chemical products—Cetostearyl Alcohol, Cetyl Alcohol, Stearyl Alcohol and Polyethylene Glycol Importer & Supplier, retrieved on Jul. 17, 2012, http://www.indiamart.com/niramchemicals/chemicals.html, 7 pages.
Novartis "LAMISIL®" Product Information, T2001-29 [online]. Retrieved from: http://www.fda.gov/downloads/Drugs/DrugSafety/PostmarketDrugSafetylnformationforPatientsandProviders/ucm052213.pdf; Published: Apr. 2001, 8 pages.
Oh et al., "Antimicrobial activity of ethanol, glycerol monolaurate or lactic acid against Listeria moncylogenes,"Int. J. Food Microbiology, 1993, 20:239-246.
Olsen et al., "A Multicenter, Randomized, Placebo-Controlled, Double-Blind Clinical Trial of a Novel Formulation of 5% Minoxidil Topical Foam Versus Placebo in the Treatment of Androgenetic Alopecia in Men", J. Am. Acad Dermatol, Nov. 2007, 57:767-774.
Olux Prescribing Information (2013).
OM-Cinnamate, MakingCosmetics.com, retrieved on Sep. 26, 2009, http://www.makingcosmetics.com/sunscreens/OM_Cinnamate-p102.html, 1 page.
Omega-9 Fatty Acids (Oleic Acid), Orthomolecular.org, Dec. 2004, retrieved on Aug. 15, 2014, http://orthomolecular.org/nutrients/omega9.html, 1 page.
O'Neil, The Merck Index an Encyclopedia of Chemicals, Drugs, and Biologicals, p. 153 (2006).
Optimization of Nano-Emulsions Production by Microfluidization, European Food Research and Technology. Sep. 2007, 22:5-6 (English Abstract).
Oranje et al., "Topical retapamulin ointment, 1%, versus sodium fusidate ointment, 2%, for impetigo: a randomized, observer-blinded, noninferiority study," Dermatology, 2007, 215(4):331-340.
Osborne and Henke, "Skin Penetration Enhancers Cited in the Technical Literature," Pharm. Technology, Nov. 1997, 21(11):58-86.
Padhi et al., "Phospho-olivines as positive-electrode materials for rechargeable lithium batteries," J. Electrochemical Soc., Apr. 1997, 144(4): 1188-1194.
Padi and Kulkarni, "Minocycline prevents the development of neuropathic pain, but not acute pain: possible anti-inflammatory and antioxidant mechanisms," Eur J. Pharmacol, 2008, 601:79-87.
Pakpayat et al., "Formulation of Ascorbic Acid Microemulsions with Alkyl Polyglycosides", European Journal of Pharmaceutics and Biopharmaceutics, 2009, 72:444-452.
Palamaras and Kyriakis, "Calcium antagonists in dermatology: a review of the evidence and research-based studies," Derm. Online Journal, 2005, 11(2):8.
Pantaris et al., "The lauric (coconut and palmkernal) oils", Vegetable Oils in Food Technology, Chemistry and Technology of Oils and Fats, pp. 157-202 (2002).
Passi et al., "Lipophilic antioxidants in human sebum and aging," Free Radical Research, 2002,36(4):471-477.
Pendergrass et al., "The shape and dimension of the human vagina as seen in three-dimensional vinyl polysiloxane casts," Gynecol Obstet. Invest., 1996, 42(3):178-82 (Abstract).
Penreco, "Intelligent Gel Technology Product Specifications," Rev. Jun. 2016 (2 pages).
Permethrin (Insecticide), Wildpro, retrieved on Jun. 4, 2015, http://wildpro.twycrosszoo.org/S/00Chem/ChComplex/perm.htm, 5 pages.
Perotti et al., "Topical Nifedipine With Lidocaine Ointment vs. Active Control for Treatment of Chronic Anal Fissure," Dis Colon Rectum, 2002, 45(11):1468-1475.
Pharmaceutical Benefits Advisory Committee (PBAC) of Australia. PBAC Public Summary Document-Nov. 2014 Meeting (5 pages).
Pharmaceutical Benefits Advisory Committee (PBAC) of Australia. PBAC Public Summary Document—Nov. 2014 Meeting (5 pages).
Polystyrene, Wikipedia the free encyclopedia, retrieved Apr. 21, 2014, http://web.archive.org/web/20060312210423/http://en.wikipedia.org/wiki/Polystyrene, 4 pages.
PPG-40-PEG-60 Lanolin Oil, Environmental Working Group, 2010, retrieved on May 19, 2010, http://www.cosmeticsdatabase.com/ingredient/722972/PPG-40-PEG-60_Lanolin_Oil/?ingred06=722972., 3 pages.
Prevent, The American Heritage Dictionary of the English Language, 2007, retrieved on Oct. 9, 2010, http://www.credoreference.com/entry/hmdictenglang/prevent, 1 page.
Product Data Sheet for Meclocycline, bioaustralis fine chemicals, Jun. 28, 2013, 1 page.
Promius™ Pharma LLC (2012) Scytera™ (coal tar) Foam, 2%. Product Information Sheet, 1 page.
Prud'Homme et al., Foams: theory, measurements and applications, Marcel Dekker, Inc., 1996, 327-328.
Purcell, "Natural Jojoba Oil Versus Dryness and Free Radicals," Cosmetics and Toiletries Manufacture Worldwide, 1988, 4 pages.
Purdy et al., "Transfusion-transmitted malaria: unpreventable by current donor exclusion guidelines?" Transfusion, Mar. 2004, 44:464.
Raschke et al., "Topical Activity of Ascorbic Acid: From In Vitro Optimization to In Vivo Efficacy", Skin Pharmacology and Physiology, Jul./Aug. 2004, 17(4):200-206 (Abstract).
Ravet et al., "Electroactivity of natural and sythetic triphylite," J. Power Sources, 2001, 97-98: 503-507.
Raymond, "Iodine as an Aerial Disinfectant," J. Hygiene, May 1946, 44(5):359-361.
Reaction Rate, Wikipedia, the free encyclopedia, retrieved on Dec. 18, 2011, en.wikipedia.org/wiki/Reaction_rate, 6 pages.
Receptacle, Merriam Webster, retrieved on Jul. 12, 2011, http://www.merriam-webster.com/dictionary/receptacle, 1 page.
Refina, "Viscosity Guide for Paints, Petroleum & Food Products," accessed Mar. 4, 2015, http://www.refina.co.uk/webpdfs/info_docs/Viscosity_guide_chart.pdf, 2 pages.
Regulation (EC) No. 2003/2003 of the European Parliament and of the Council, Official Journal of the European Union, Oct. 13, 2003, 2 pages.
Repa et al. "All-trans-retinol is a ligand for the retinoic acid receptors," Proc. Natl. Acad Sci, USA, Aug. 1993, 90: 7293-7297.
Reregistration Eligibility Decision for Pyrethrins, EPA, Jun. 7, 2006, 108 pages.
Richwald, "Imiquimod", Drugs Today, 1999, 35(7):497 (Abstract).
Rieger and Rhien, "Emulsifier Selection/HLB," Surfactants in Cosmetics, 129, 1997.
Rohstoffinformationen, Hoffmann Mineral, 2008, 8 pages (with English translation).
Rosacea, Clinuvel Pharmaceuticals, 2010, retrieved on Sep. 9, 2010, http://clinuvel.com/skin-conditions/common-skin-conditions/rosacea#h0-6-prevention, 5 pages.
Rowe et al., "Glyceryl Monooleate," Handbook of Pharmaceutical Excipients, 2011, 10 pages, retrieved on Dec. 19, 2011, http://www.medicinescomplete.com/mc/excipients/current/1001938996.htm?q=glyceryl%20monooleate&t=search&ss=text&p=I# hit.
Rowe et al., "Octyldodecanol," Handbook of Pharmaceutical Excipients, 2011, 9 pages, retrieved on Dec. 19, 2011, URL:http://www.medicinescomplete.com/mc/excipients/current/1001942450.htm?q=octyldodecanol&t=search&ss=text&p=I# hit.
Rowe et al., "Sucrose Palmitate," Handbook of Pharmaceutical Excipients, 2011, 11 pages, retrieved on Dec. 19, 2011, URL:http://www.medicinescomplete.com/mc/excipients/current/EXP-TD-c46-mn0001.htm?q=sucrose%20stearate&t=search&ss=text&p=I# hit.
Rowe et al., "Sucrose Stearate," Handbook of Pharmaceutical Excipients, 2011, 11 pages, retrieved on Dec. 19, 2011, URL:http://www.medicinescomplete.com/mc/excipients/current/EXP-TD-cll-mnOOOI-mnOOOI.htm?q=sucrose%20stearate&t=search&ss=text&p=3# hit.
RSES (Oil in Refrigerator Systems, Service Application Manual, 2009).
Rutledge, "Some corrections to the record on insect repellents and attractants," J. Am. Mosquito Control Assoc, Dec. 1988, 4(4): 414-425.
Sakai et al., "Characterization of the physical properties of the stratum corneum by a new tactile sensor," Skin Research and Technology, Aug. 2000, 6:128-134.
Sanders et al., "Stabilization of Aerosol Emulsions and Foams," J. Soc. Cosmet. Chem., 1970, 21:377-391.
Sarkar et al., "A Comparative Study of 20% Azelaic Acid Cream Monotherapy versus a Sequential Therapy in the Treatment of Melasma in Dark-Skinned Patients", Dermatology, 205(3): 249-54 (2002).
Sarpotdar, P.P. et al. (Jan. 1986) "Effect of Polyethylene Glycol 400 on the Penetration of Drugs Through Human Cadaver Skin In Vitro" J Pharma Sci, 75(1):26-28.
Savin et al., "Tinea versicolor treated with terbinafine 1% solution," Int J. Dermatol, Nov. 1999; 38(11): 863-865.
Schaefer, "Silicone Surfactants," Tenside Surf. Det., 1990, 27(3): 154-158.
Schmidt, "Malassezia furfur: a fungus belonging to the physiological skin flora and its relevance in skin disorders," Cutis, Jan. 1997, 59(1):21-24 (Abstract).
Schmolka, "A review of block polymer surfactants," Journal of the American Oil Chemists Society, Mar. 1977, 54: 110-116.
Schott, "Rheology," Remington's Pharmaceutical Sciences, 17th Edition, 1985, 330-345.
Schutze, "Iodine and Sodium Hypochlorite as Wound Disinfectants," The British Medical Journal, 1915, 921-922.
Sciarra et al., "Aerosols", Remington: The Science and Practice of Pharmacy, pp. 963-966 (2000).
Sciarra, "Aerosol Technology," Kirk-Othmer Encyclopedia of Chemical Technology, Jul. 2012, 20 pages.
Scientific Discussion for the Approval of Aldara, EMEA, 2005, 10 pages.
Scott, "A Practical Guide to Equipment Selection and Operating Techniques," Pharmaceutical Dosage Forms: Disperse Systems, vol. 3, Copyright 1998, 291-362.
Scully et al., "Cancers of the oral mucosa treatment and management," Medscape Drugs, Diseases and Procedures, Apr. 20, 2012, retrieved on Oct. 12, 2013, <http://emedicine.medscape.com/article/1075729-treatment>, 10 pages.
Seborrheic Dermatitis, retrieved on Sep. 9, 2010, http://www.cumc.columbia.edu/student/health/pdf/R-S/Seborrhea%20Dermatitis.pdf, 2 pages.
Security Datasheet, Luvitol EHO, Cetearyloctanoat, Nov. 27, 2013, 10 pages.
Sehgal, "Ciclopirox: a new topical pyrodonium antimycotic agent: A double-blind study in superficial dermatomycoses," British Journal of Dermatology, 1976, 95:83-88.
Sharp, "Oil," Dictionary of Chemistry, Copyright 1990, 286.
Shear et al., "Pharmacoeconomic analysis of topical treatments for tinea infections," Pharmacoeconomics, Mar. 1995, 7(3):251-267.
Shear, Vocabulary.com, retrieved on Aug. 23, 2013, <URL: https://www.vocabulary.com/dictionary/shear>, 3 pages.
Sheer, Vocabulary.com, retrieved on Aug. 23, 2013, https://www.vocabulary.com/dictionary/sheer, 3 pages.
Shemer, A. et al. (2016) "Topical minocycline foam for moderate to severe acne vulgaris: Phase 2 randomized double-blind, vehicle-controlled study results" J Am Acad Dermatol, 74(6):1251-1252.
Sheu et al., "Effect of Tocopheryl Polyethylene Glycol Succinate on the Percutaneous Penetration of Minoxidil from Water/Ethanol/Polyethylene Glycol 400 Solutions," Drug Dev. Ind. Pharm., Jun. 2006, 32(5):595-607 (Abstract).
Shim et al., "Transdermal Delivery of Mixnoxidil with Block Copolymer Nanoparticles," J. Control Release, Jul. 2004, 97(3):477-484 (Abstract).
Shrestha et al., "Forming properties of monoglycerol fatty acid esters in nonpolar oil systems," Langmuir, 2006, 22: 8337-8345.
Sigma Aldrich, "Surfactants Classified by HLB Numbers" 2017 [online]. Retrieved from the Internet: www.sigmaaldrich.com/materials-science/material-science-products.html?TablePage=22686648, on Jul. 8, 2017 (3 pages).
Sigma-Aldrich. http://www.sigmaaldrich.com/catalog/product/sial/p1754?lang=en&reg ion=. Published:Mar. 5, 2014.
Silicone, Oxford Dictionaries Online, retrieved on Apr. 19, 2011, http://www.oxforddictionaries.com/definition/silicone?view=uk, 1 page.
Simoni et al., "Retinoic acid and analogs as potent inducers of differentiation and apoptosis. New promising chemopreventive and chemotherapeutic agents in oncology," Pure Appl Chem., 2001, 73(9):1437-1444.
Simovic et al., "The influence of Processing Variables on Performance of O/W Emulsion Gels Based on Polymeric Emulsifier (Pemulen® TR-2NF)," International Journal of Cosmetic Science, Dec. 2001, 21(2)119-125 (Abstract).
Smith, "Hydroxy acids and skin again," Soap Cosmetics Chemical Specialties, Sep. 1993, 69(9):54-59.
Smith, "Sore Nipples," Breastfeeding Mom's Sore Nipples / Breastfeeding Basics, retrieved on Feb. 8, 2012, http://breastfeedingbasics.com/articles/sore-nipples, 9 pages.
Softemul-165: Product Data Sheet, Mohini Organics PVT LTD, retrieved Apr. 10, 2014, http://www.mohiniorganics.com/Softemul165.html#, 1 page.
Solans et al., "Overview of basic aspects of microemulsions," Industrial Applications of Microemulsions, New York, 1997, 1-17.
Solodyn® (Minocycline HCI, USP) Prescribing Information; revised Jun. 2016, 2 pages.
Sonneville-Aubrun et al., "Nanoemulsions: A New Vehicle for Skincare Products," Advances in Colloid and Interface Science, 2004, 108-109:145-149.
Spa Collections, AG & CO. Essential oil workshop, retrieved on Jan. 31, 2010, http://www.agworkshop.com/p3.asp, 1 page.
Squillante et al., "Codiffusion of propylene glycol and dimethyl isosorbide in hairless mouse skin," European J. Pharm. Biopharm., 1998, 46:265-271.
Squire and Goode, "A randomized, single-blind, single-centre clinical trial to evaluate comparative clinical efficacy of shampoos containing ciclopirox olamine (1.5%) and salicylic acid (3%), or ketoconazole (2%, Nizoral) for the treatment of dandruff/seborrhoeic dermatitis," Dermatolog Treat., Jun. 2002, 13(2):51-60 (Abstract).
Sreenivasa et al., "Preparation and Evaluation of Minoxidil Gels for Topical Application in Alopecia," Indian Journal of Pharmaceutical Sciences, 2006, 68(4):432-436.
Sreenivasan, B. et al. (1956)"Studies on Castor Oil. I. Fatty Acid Composition of Castor Oil" J Am Oil Chem Soc, 33:61-66.
Stehle et al., "Uptake of minoxidil from a new foam formulation devoid of propylene glycol to hamster ear hair follicles," J. Invest. Dermatol., 2005, 124(4): A101 (Abstract).
Sugisaka et al., "The Physicochemical Properties of Imiquimod, The First Imidazoquinoline Immune Response Modifier", Pharmaceutical Research, Nov. 1997, 14(11):S475, Abstract 3030.
Sun Pharmaceutical Industries LTD. v. Eli Lilly and Co. , 611 F.3d 1381, 95 USPQ2d 1797 (Fed. Cir. 2010),7 pages.
Sung, J.H. et al. (2010) "Gel characterisation and in vivo evaluation of minocycline-loaded wound dressing with enhanced wound healing using polyvinyl alcohol and chitosan" Intl J Pharmaceut, 392:232-240.
Surfactant, Wikipedia, the free encyclopedia, retrieved on Oct. 24, 2010, http://en.wikipedia.org/wiki/Surfactant, 7 pages.
Tadros, "Surfactants in Nano-Emulsions." Applied Surfactants: Principles and Applications, 2005, 285-308.
Tamarkin, D. (2013) "Foam: A Unique Delivery Vehicle for Topically Applied Formulations" in: Formulating Topical Applications-a Practical Guide. Dayan N, Ed., Carol Stream, IL: CT Books, Chapter 9, pp. 233-260.
Tamarkin, D. (2013) "Foam: A Unique Delivery Vehicle for Topically Applied Formulations" in: Formulating Topical Applications—a Practical Guide. Dayan N, Ed., Carol Stream, IL: CT Books, Chapter 9, pp. 233-260.
Tan et al., "Effect of Carbopol and PolyvinYlpyrrolidone on the Mechanical, Rheological, and Release Properties of Bioadhesive Polyethylene Glycol Gels," AAPS PharmSciTech, 2000; 1(3) Article 24, 10 pages.
Tanhehco, "Potassium Channel Modulators as Anti-Inflammatory Agents", Expert Opinion on Therapeutic Patents, Jul. 2001, 11(7):1137-1145 (Abstract).
Tarumoto et al., "Studies on toxicity of hydrocortisone 17-butyrate 21-propionate-1. Acute toxicity of hydrocortisone 17-butyrate 21-propionate and its analogues in mice, rats and dogs (author's transl)," J Toxicol Sci., Jul. 1981, 6:1-16 (Abstract).
Tata et al., "Penetration of Minoxidil from Ethanol Propylene Glycol Solutions: Effect of Application Volume on Occlusion," Journal of Pharmaceutical Sciences, Jun. 1995, 84(6):688-691.
Tata et al., "Relative Influence of Ethanol and Propylene Glycol Cosolvents on Deposition of Minoxidil into the Skin," Journal of Pharmaceutical Sciences, Jul. 1994, 83(10):1508-1510.
Tavss et al., "Anionic detergent-induced skin irritation and anionic detergent-induced pH rise of bovine serum albumin," J. Soc. Cosmet. Chem., Jul./Aug. 1988, 39:267-272.
TCI America, Safety Data Sheet; Product Name: Squalane. Product Code: H0096 [online]. Retrieved from: https://www.spectrumchemical.com/MSDS/TCI-H0096.pdf. Revised: Oct. 6, 2014, 5 pages.
Tea Tree Oil, LookChem, Chemical Abstract No. 68647-73-4, 2012, 2 pages.
Tenjarla, "Microemulsions: An Overview and Pharmaceutical Applications", Crit. Rev. Ther. Drug Carrier Sys., 16(5): 461-521 (1999).
The HLB System-A Time-Saving Guide to Emulsifier Selection, ICI Americas Inc., Mar. 1980, 1-22.
The HLB System—A Time-Saving Guide to Emulsifier Selection, ICI Americas Inc., Mar. 1980, 1-22.
The Merck Index: An Encyclopedia of Chemicals, Drugs, and Biologicals 1299-1300, 1638 (13th ed., 2001).
The United States Pharmacopeia: The National Formulary, USP23/NF18, US Pharmacopoeia, Jan. 1995, p. 10-14.
Third Party Submission in Published Patent Application, U.S. Appl. No. 12/014,088, filed Feb. 4, 2009, 4 pages.
Thorgeirsdottir et al., "Antimicrobial activity of monocaprin: a monoglyceride with potential use as a denture disinfectant," Acta Odontologica Scandinavica, Feb. 2006, 64:21-26 (Abstract only).
Tirumala et al., "Abstract: D28.00011: Enhanced order in thinfilms of Pluronic (A-B-A) and Brij (A-B) Block copolymers blended with poly (acrylic acid)," Session D28: Block Copolymer Thin Films, Mar. 13, 2006, 1 page, Abstract.
Tjulandin, S. et al. (2013) "Phase I, dose-finding study of AZD8931, an inhibitor of EGFR (erbB1), HER2 (erbB2) and HER3 (erbB3) signaling, in patients with advanced solid tumors" Invest New Drugs, 32(1):145-153.
Todd et al., "Volatile Silicone Fluids for Cosmetic Formulations," Cosmetics and Toiletries, Jan. 1976, 91:27-32.
Torma et al., "Biologic activities of retinoic acid and 3, 4-Didehydroretinoic acid in human keratinocytes are similar and correlate with receptor affinities and transactivation properties," J. Invest. Dermatology, 1994, 102: 49-54.
Torres-Rodriguez, "New topical antifungal drugs," Arch Med Res., Winter 1993, 24(4): 371-375 (Abstract).
Toxicology and Carcinogenesis Studies of T-Butyl Alcohol (Cas No. 75-65-0) in F344/N Rats and B6C3F1 Mice (Drinking Water Studies), May 1995, retrieved on Dec. 9, 2008, http://ntp.niehs.nih.gob/?objectid-=0709F73D-A849-80CA-5FB784E866B576D1, 4 pages.
Trofatter, "Imiqimod in clinical practice", European Journal of Dermatology, Oct./Nov. 1998, 8(7 Supp.):17-19 (Abstract).
Tsai et al., "Drug and Vehicle Deposition from Topical Applications: Use of In Vitro Mass Balance Technique with Minoxidil Solutions", J. Pharm. Sci., Aug. 1992, 81(8):736-743 (Abstract).
Tsai et al., "Effect of Minoxidil Concentration on the Deposition of Drug and Vehicle into the Skin," International Journal of Pharmaceutics, 1993, 96(1-3):111-117 (Abstract).
Tsai et al., "Influence of Application Time and Formulation Reapplication on the Delivery of Minoxidil through Hairless Mouse Skin as Measured in Franz Diffusion Cells," Skin Pharmacol., 1994, 7:270-277.
Tyring, "Immune-Response Modifiers: A New Paradigm in the Treatment of Human Papillomavirus," Current Therapeutic Research, Sep. 2000, 61(9):584-596 (Abstract).
Tzen et al. "Surface Structure and Properties of Plant Seed Oil Bodies," Department of Botany and Plant Sciences, University of California, Riverside, California 92521, Apr. 15, 1992, 9 pages.
Tzen et al., "Lipids, proteins and structure of seed oil bodies from diverse species," Plant Physiol., 1993, 101:267-276.
U.S. Final Office Action for U.S. Appl. No. 11/430,437, Tamarkin et al., dated Dec. 16, 2008, 24 pages.
U.S. Office Action for U.S. Appl. No. 11/430,437, Tamarkin et al., dated May 9, 2008, 27 pages.
U.S. Office Action from U.S. Appl. No. 11/430,599, dated Jul. 28, 2008, 59 pages.
Uner et al., "Skin Moisturizing Effect and Skin Penetration of Ascorbyl Palmitate Entrapped in Solid Lipid Nanoparticles (SLN) and Nanostructured Lipid Carriers (NLC) Incorporated into Hydrogel," Pharmazie, 2005, 60:751-755.
United States Standards for Grades of Olive Oil and Olive-Pomace Oil, United States Dept. of Agriculture, Oct. 25, 2010, 21 pages.
Valenta, "Effects of Penetration Enhancers on the In-vitro Percutaneous Absorption of Progesterone," J. Pharm. Pharmacol., 1997, 49: 955-959.
Van Cutsem et al., "The anti-inflammatory effects of ketoconazole," J. Am. Acad. Dermatol., Aug. 1991, 25(2):257-261.
Van Slyke, "On the measurement of buffer values and on the relationship of buffer value to the dissociation constant of the buffer and the concentration and reaction of the buffer solution," J. Biol. Chem., 1922, 52:525-570.
Vera et al., "Scattering optics of Foam," Applied Optics, Aug. 20, 2001, 40(24):4210-4214.
Veron et al., "Stability of Minoxidil Topical Formulations", Ciencia Pharmaceutica, 1992, 2(6):411-414 (Abstract).
Versagel® M Series, Mineral Oil Moisturizing Gels. Product Bulletin, retrieved from https://archive.org/web/, as archived Oct. 15, 2006, 3 pages.
View of NCT01171326 on Dec. 7, 2010, ClinicalTrials.gov archive, Dec. 7, 2010, retrieved on Sep. 9, 2013, http://clinicaltrials.gov/archive/NCT01171326/2010_12_07, 4 pages.
View of NCT01362010 on Jun. 9, 2011, ClinicalTrials.gov archive, Jun. 9, 2011, retrieved on Sep. 9, 2013, < http://clinicaltrials.gov/archive/NCT01362010/2011_06_09>, 3 pages.
Walstra, "Principles of Foam Formation and Stability", Foams: Physics, Chemistry and Structure, pp. 1-15 (1989).
Wang and Chen, "Preparation and surface active properties of biodegradable dextrin derivative surfactants," Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2006, 281(1-3):190-193.
Water Jel Technologies, "Material Safety Data Sheet for Neomycin Antibiotic Ointment," Dec. 1, 2004, 7 pages.
WebMD (2014) "Psoriasis Health Center" [online]. Retrieved Apr. 13, 2015; retrieved from the Internet: http://www.webmd.com/skin-problems-and-treatments/psoriasis/psoriasis-symptoms, 3 pages.
WebMD (2014) "Understanding Rosacea-the Basics" [online]. Retrieved Apr. 13, 2015; retrieved from the Internet: http://www.webmd.com/skin-problems-and-treatments/understanding -rosacea-basics (5 pages).
WebMD (2014) "Understanding Rosacea—the Basics" [online]. Retrieved Apr. 13, 2015; retrieved from the Internet: http://www.webmd.com/skin-problems-and-treatments/understanding -rosacea-basics (5 pages).
WebMD (2017) "User Reviews & Ratings-Scytera topical" [online]. Retrieved Mar. 1, 2017; retrieved from the Internet: http://www.webmd.com/drugs/drugreview-151502-Scytera+topical.aspx?drugid=151502&drugname=Scytera+topical&sortby=3 (2 pages).
WebMD (2017) "User Reviews & Ratings—Scytera topical" [online]. Retrieved Mar. 1, 2017; retrieved from the Internet: http://www.webmd.com/drugs/drugreview-151502-Scytera+topical.aspx?drugid=151502&drugname=Scytera+topical&sortby=3 (2 pages).
Weindl et al., "Hyaluronic acid in the treatment and prevention of skin diseases: molecular biological, pharmaceutical and clinical aspects," Skin Pharmacology and Physiology, 2004, 17: 207-213.
Wenninger et al., "International Cosmetic Ingredient Dictionary and Handbook," The Cosmetic, Toiletry, and Fragrance Association, Washington, DC., 1997, vol. 1, 4 pages.
Wermuth, "Similarity in drugs: reflections on analogue design," Drug Discovery Today, Apr. 2006, 11(7/8):348-354.
What Is CP Serum, Skin Biology, retrieved on Dec. 1, 2008, http://web.archive.org/web/20030810230608/http://www.skinbio.com/cpserum.- html, 21 pages.
What Is TSC?, Tuberous Sclerosis Alliance, Jan. 1, 2005, retrieved on Feb. 6, 2014, http://www.tsalliance.org.pages.aspx?content=2, 3 pages.
Williams et al., "Acne vulgaris," Lancet, 2012, 379:361-372.
Williams et al., "Scale up of an olive/water cream containing 40% diethylene glycol monoethyl ether," Dev. Ind. Pharm., 2000, 26(1):71-77.
Williams et al., "Urea analogues in propylene glycol as penetration enhancers in human skin," International Journal of Pharmaceutics, 1989, 36, 43-50.
Wormser et al., "Protective effect of povidone-iodine ointment against skin lesions induced by sulphur and nitrogen mustards and by non-mustard vesicants," Arch. Toxicol., 1997, 71, 165-170.
Wormser, "Early topical treatment with providone-iodine ointment reduces, and sometimes prevents, skin damage following heat stimulus," Letter to the Editor, Burns, 1998, 24:383.
Wrightson, W.R. et al. (1998) "Analysis of minocycline by high-performance liquid chromatography in tissue and serum" J Chromatography B, 706:358-361.
Wu et al., "Interaction of Fatty Acid Monolayers with Cobalt Nanoparticles," Nano Letters, 2004, 4(2): 383-386.
Yamada et al., "Candesartan, an angiotensin II receptor antagonist, suppresses pancreatic inflammation and fibrosis in rats," J. Pharmacol. Exp. Ther., 2003, 307(1):17-23.
Zeichner, J.A. (2010) "Use of Topical Coal Tar Foam for the Treatment of Psoriasis in Difficult-to-treat Areas" J Clin Aesthet Dermatol, 3(9):37-40.
Zinc Oxide, Knovel, 2006, retrieved on Apr. 18, 2012, http://www.knovel.com/web/portal/knovel_content?p_p_id=EXT_KNOVEL_CONTENT . . . , 2 pages.
Ziolkowsky, "Moderne Aerosolschaume in der Kosmetik (Modern Aerosol Foams in Chemical and Marketing Aspects)" Seifen-Ole-Fette-Wachse, Aug. 1986, 112(13): 427-429 (with English translation).

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